{"id":143,"date":"2017-09-07T17:30:48","date_gmt":"2017-09-08T00:30:48","guid":{"rendered":"http:\/\/labs.wsu.edu\/mstf\/?page_id=143"},"modified":"2023-07-17T09:45:14","modified_gmt":"2023-07-17T16:45:14","slug":"journal-articles","status":"publish","type":"page","link":"https:\/\/labs.wsu.edu\/mstf\/journal-articles\/","title":{"rendered":"Journal Articles"},"content":{"rendered":"<br \/>\n<section id=\"builder-section-1504830544390\" class=\"row single gutter pad-top\">\n<div style=\"\" class=\"column one \">\n<ol style=\"text-align: left\" reversed=\"\">\n<li>Billah, M. M., Hua, D., Dutta, P., and Liu, J., 2023, \u201cEffects of Receptor Properties on Particle Internalization through Receptor-mediated Endocytosis\u201d,<em> Soft Matter,<\/em> in Press<\/li>\n<li>Billah, M. M., Khan, A. I., Liu, J., and Dutta, P., 2023, \u201cPhysics-Informed Deep Neural Network for Inverse Heat Transfer Problems in Materials\u201d,<em> Materials Today Communications,<\/em> Vol. 35, 106336.<\/li>\n<li>Khan, A. I., Reynolds, O., Thiessen, D. B., Adesope, O. O., Van Wie, B. J., Dutta, P., 2023 \u201cDesign, fabrication, Testing, and Implementation of a Low-Cost Venturi Meter for Hands-on Active Learning\u201d <em>International Journal of Engineering Education, <\/em>Vol. 39(4), 845-859.<\/li>\n<li>Dutta, P. and Gas, B., 2023, \u201cEditorial\u201d <em>Electrophoresis, <\/em>Vol. 44(7-8), 633.<\/li>\n<li>Odstrcil, R., Dutta, P., and Liu, J., 2022, \u201cLINES: Log-Probability Estimation via Invertible Neural Networks for Enhanced Sampling\u201d <em>ACS Journal of Chemical Theory and Computation<\/em>, Vol. 18, 6297-6309.<\/li>\n<li>Dinh, Q. V., Liu, J., Dutta, P., 2023, \u201cEffect of Multiple Slp4-a on Membrane Bending during Prefusion of Vesicles in Blood-brain barrier\u201d <em>ASME Journal of Biomechanical Engineering<\/em>, Vol. 145, pp. 011006 (1-12).<\/li>\n<li>Reynolds, O., Van Wie, B. J., Curtis, H., Gartner, J., Dahlke, K., Adesope, O. O., Dutta, P., 2022 \u201cTeaching Fluid Mechanics and Heat Transfer in Hands-on and Virtual Settings with Low-Cost Desktop Learning Modules\u201d <em>International Journal of Engineering Education, <\/em>Vol. 38(5), 1536-1549.<\/li>\n<li>Gas, B., and Dutta, P., 2022, \u201cEditorial \u2013 Fundamentals of Electrophoresis 2022\u201d <em>Electrophoresis, <\/em>Vol. 43(5-6), 655.<\/li>\n<li>Khan, A. I., Pour, N. B., Bryant, K., Thiessen, D. B., Adesope, O. O., Van Wie, B. J., Dutta, P., 2022 \u201cEffectiveness of Hands-on Desktop Learning Modules to Improve Student Learning in Fluid Mechanics and Heat Transfer across Institutions and Program Types\u201d <em>International Journal of Engineering Education, <\/em>Vol. 38(3), 849-872.<\/li>\n<li>Khan, A. I., Kim, M., Dutta, P., 2022 \u201cFine-tuning based Transfer Learning for Characterization of Adeno-Associated Virus\u201d <em>Journal of Signal Processing Systems, <\/em>Vol. 94, doi.org\/10.1007\/s11265-022-01758-3.<\/li>\n<li>Khan, A. I., Billah, M. M., Ying, C., Liu, J., and Dutta, P., 2021, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2020\/12\/pros_IJHMT8.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Bayesian method for parameter estimation in transient heat transfer problem<\/a>\u201d, <em>International Journal of Heat and Mass Transfer,<\/em> Vol. 166, 120746.<\/li>\n<li>Karawdeniya, B. I., Bandara, Y.N.D., Khan, A. I., Chen, W. T., Vu, H., Morshed, A., Suh, J., Dutta, P., and Kim, M. J., 2020, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2020\/12\/pros_Nanoscale2.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Adeno-associated virus characterization for cargo discrimination through nanopore responsiveness<\/a>\u201d, <em>Nanoscale,<\/em> Vol. 12, 23721.<\/li>\n<li>Dinh, Q. V., Liu, J., and Dutta, P., 2020, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2020\/12\/pros_BBR1.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Effect of Calcium ion on synaptotagmin-like protein during pre-fusion of vesicle for exocytosis in blood-brain barrier<\/a>\u201d, <em>Biochemistry and Biophysics Reports,<\/em> Vol. 24, 100845.<\/li>\n<li>Cai, X., Ding, S., Shi, Q., Lyu, Z., Liu, D., Dong, W., Du, M., Dutta, P., Song, Y., Du, D., and Lin, Y., 2020, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2020\/10\/pros_ACSABM3.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Eyeball-like yolk\u2212shell bimetallic nanoparticles for synergistic<br \/>\nphotodynamic\u2212photothermal therapy<\/a>\u201d, <em>ACS Applied Bio Materials,<\/em> Vol. 3, 5922-5929.<\/li>\n<li>Ding, S., Khan, A. I., Cai, X., Song, Y., Lyu, Z., Du, D., Dutta, P., and Lin, Y., 2020, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2020\/09\/pros_Materials_Today.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Overcoming blood\u2013brain barrier transport: Advances in nanoparticle-based drug delivery strategies<\/a>\u201d, <em>Materials Today,<\/em> Vol. 37, 112-125.<\/li>\n<li>Jewel, Y., Dinh, Q.V., Liu, J., and Dutta, P., 2020, <a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2020\/09\/pros_protein3.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Substrate-dependent transport mechanism in AcrB of multidrug resistant bacteria<\/a>, <em>Proteins<\/em>, Vol. 88, 853-864.<\/li>\n<li>Morshed, A., Karawdeniya, B. I., Bandara, Y. N. D., Kim, M. J., and Dutta, P., 2020, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2020\/04\/pros_EP19.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Mechanical characterization of vesicles and cells: A review <\/a>\u201d, <em>Electrophoresis,<\/em> Vol. 41(7-8), 449-470.<\/li>\n<li>Khan, A.I., Liu, J., and Dutta, P., 2020, <a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2020\/01\/pros_BBAG5.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Bayesian inference for parameter estimation in lactoferrin-mediated iron transport across blood-brain barrier<\/a>, <em>Biochimica et Biophysica Acta (BBA)\u2013 General Subjects<\/em>, Vol. 1864, 1-13.<\/li>\n<li>Khan, A.I., and Dutta, P., 2019, <a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/09\/pros_micromachines.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Analytical Solution of Time-Periodic Electroosmotic Flow through Cylindrical Microchannel with Non-Uniform Surface Potential<\/a>, <em>Micromachines<\/em>, Vol. 10(8), 498.<\/li>\n<li>Deng, H., Dutta, P., and Liu, J., 2019, <a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/09\/pros_SM1.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Entry Modes of Ellipsoidal Nanoparticle by Membrane during Clathrin-mediated Endocytosis<\/a>, <em>Soft Matter,<\/em> Vol. 15, 5128-5137.<\/li>\n<li>Deng, H., Dutta, P., and Liu, J., 2019, \u201cStochastic Modeling of Nanoparticle Internalization and Expulsion through Receptor-mediated Transcytosis\u201d, <em>Nanoscale,<\/em> (In-Press).<\/li>\n<li>Morshed, A., Dutta, P., and Kim, M.J., 2019, <a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/09\/pros_EP18.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Electrophoretic Transport and Dynamic Deformation of Bio-vesicles<\/a>, <em>Electrophoresis,<\/em> Vol. 40, 2584-2591. <a href=\"https:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/elps.201970154\" target=\"_blank\" rel=\"noopener noreferrer\">Featured on the Back Cover.<\/a><\/li>\n<li>Song, Y., Cai, X., Du, D., Dutta, P., and Lin, Y., 2019, <a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/04\/pros_ACSABM.pdf\">Comparison of Blood-Brain Barrier Models for in vitro Biological Analysis: One Cell Type vs Three Cell Types<\/a>, <em>ACS Applied Bio Materials,<\/em> Vol. 2, 1050-1055.<\/li>\n<li>Dutta, P. and Gas, B, 2019, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/06\/pros_EPSI2019.pdf\">Editorial \u2013 Fundamentals of Electrophoresis 2019<\/a>\u201d Electrophoresis, Vol. 40(5), 605.<\/li>\n<li>Kim, H., Khan, A.I. and Dutta, P., 2019, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_JFE4.pdf\">Time-Periodic Electro-Osmotic Flow with Nonuniform Surface Charges<\/a>\u201d, <em>ASME Journal of Fluids Engineering,<\/em> Vol. 141, pp 081201.<\/li>\n<li>Darvish, A., Lee, J.S., Saharia, J., Sundaram, R.V.K., Goyal, G., Bandara, N., Ahn, C.W., Kim, J., Dutta, P., Chaiken, I., and Kim, M.J., 2019, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_EP17.pdf\">Mechanical Characterization of HIV-1 with a Solid State Nanopore Sensor<\/a>\u201d, <em>Electrophoresis,<\/em> Vol. 40(5), 776-783.<\/li>\n<li>Majee, P.S., Bhattacharyya, S., Dutta, P., 2019, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_EP16.pdf\">On Electrophoresis of a pH-regulated Nanogel with Ion Partitioning Effects<\/a>\u201d, <em>Electrophoresis<\/em>, Vol. 40(5), 699-709.<\/li>\n<li>Khan, A.I., Lu, Q., Du, D., Lin, Y., and Dutta, P., 2018, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_BBAG4.pdf\">Quantification of Kinetic Rate Constants for Transcytosis of Polymeric Nanoparticle through Blood-Brain Barrier<\/a>\u201d, <em>Biochimica et Biophysica Acta (BBA)\u2013 General Subjects<\/em>, Vol. 1862(12), 2779\u20132787.<\/li>\n<li>Lu, Q., Cai, X., Zhang, X., Li, S., Song, Y., Du, D, Dutta, P., and Lin, Y., 2018, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/06\/pros_ACSABM2.pdf\">Synthetic Polymer Nanoparticles Functionalized with Different Ligands for Receptor-mediated Transcytosis across Blood-Brain Barrier<\/a>\u201d, <em>ACS Applied Bio Materials<\/em>, Vol. 1(5), 1687-1694.<\/li>\n<li>Morshed, A., Dutta, P., Hossan, M.R., and Dillon, R., 2018, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_PRF1.pdf\">Electrodeformation of Vesicles Suspended in a Liquid Medium<\/a>\u201d, <em>Physical Review Fluids,<\/em> Vol. 3(10), 103702.<\/li>\n<li>Deng, H., Dutta, P., and Liu, J., 2018, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_BBAG3.pdf\">Stochastic Simulations of Nanoparticle Internalization through Transferrin Receptor Dependent Clathrin-mediated Endocytosis<\/a>\u201d <em>Biochimica et Biophysica Acta (BBA)\u2013 General Subjects<\/em>, Vol. 1862(9), 2104-2111.<\/li>\n<li>Hossan, M.R., Dutta, D., Islam, N., and <u>Dutta, P.<\/u>, 2018, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_EP15.pdf\">Review: Electric Field Driven Pumping in Microfluidic Device<\/a>\u201d, <em>Electrophoresis<\/em>, Vol. 39(5-6), 702-731.<\/li>\n<li>Khan, A.I., Liu, J., and Dutta, P., 2018, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_BBAG2.pdf\">Iron Transport Kinetics through Blood-Brain Endothelial Cells<\/a>\u201d, <em>Biochimica et Biophysica Acta (BBA)\u2013 General Subjects<\/em>, Vol. 1862(5), 1168-1179.<\/li>\n<li>Morshed, A., Dutta, P., and Dillon, R., 2018, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_ANUM1.pdf\">Mathematical Modeling and Numerical Simulation of the TGFBeta\/Smad Signaling Pathway in Tumor Microenvironments<\/a>\u201d, <em>Applied Numerical Mathematics<\/em>, Vol. 133, 41-51.<\/li>\n<li>Morshed, A. and <u>Dutta, P.<\/u>, 2018, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_BME1-1.pdf\">Mathematical Model for Tissue-Level Hypoxic Response in Microfluidic Environment<\/a>\u201d, <em>ASME Journal of Biomechanical Engineering,<\/em> Vol. 140, 011009<em>.<\/em><\/li>\n<li>Dutta, P., 2018, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_EPSP2018.pdf\">Editorial \u2013 Fundamentals of Electrophoresis 2018<\/a>\u201d, <em>Electrophoresis<\/em>, Vol. 39(5-6), 689.<\/li>\n<li><b><\/b><u><\/u>Yoo, K., Banerjee, S., Kim, J., and <u>Dutta, P.<\/u>, 2017, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_Energies.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">A Review of Lithium-Air Battery Modeling Studies<\/a>\u201d <em> Energies,<\/em> Vol. 10(11), 1748<i>.<\/i><\/li>\n<li>Gannarapu, A., <u>Dutta, P.,<\/u> and Gozen B. A., 2017, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_IJHMT7.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Prediction of Steady State Freeze Front Position during 3D Printing of Microstructures<\/a>\u201d, <em>International Journal of Heat and Mass Transfer,<\/em> Vol. 115, 743-753.<\/li>\n<li>Song, Y., Du, D., Li, L., <u>Dutta, P.<\/u>, Xu, J. and Lin, Y., 2017 \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_ACSAMI.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">In Vitro Study of Receptor-mediated Silica Nanoparticles Delivery across Blood-Brain Barrier<\/a>\u201d, <em>ACS Applied Materials and Interfaces<\/em>, Vol. 9(24), 20410-20416.<\/li>\n<li><b> <\/b><u><\/u>Jewel, Y., Liu, J., and <u>Dutta, P.<\/u>, 2017, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_MBS1.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Coarse-grained Simulations of Conformational Changes in Multidrug Efflux Transporter AcrB<\/a>\u201d, <i>Molecular Biosystems, <\/i>Vol. 13(10), 2006-2014<i>.<\/i><\/li>\n<li><u>Dutta, P.<\/u>, 2017, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_EPSP.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Editorial \u2013 Fundamentals of Electrophoresis<\/a>\u201d, <i>Electrophoresis\u201d, <\/i>Vol. 38(5), 561-562<i>.<\/i><\/li>\n<li>Cho, M., <u>Dutta, P.<\/u> and Shim, J., 2017, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_JPT.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">A Non-Sampling Mixing Index for Multicomponent Mixtures<\/a>\u201d, <i>Powder Technology, <\/i>Vol. 319, 434-444<i>.<\/i><\/li>\n<li><b><\/b><u><\/u>Jewel, Y., Dutta, P., and Liu, J., 2017, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_Protein2.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Exploration of conformational changes in lactose permease upon sugar binding and proton transfer through coarse\u2010grained simulations<\/a>\u201d, <i>Proteins, <\/i>Vol. 85, 1856-1865<i>.<\/i><\/li>\n<li>Morshed, A. and <u>Dutta, P.<\/u>, 2017, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_BBAG1.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Hypoxic Behavior in Cells under Controlled Microfluidic Environment<\/a>\u201d, <i>Biochimica et Biophysica Acta (BBA)\u2013 General Subjects, <\/i>Vol. 1861(4), 759-771.<\/li>\n<li>Shim, J., Yoo, K. and <u>Dutta, P.<\/u>, 2017, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_EP13.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Steady\u2010state Protein Focusing in Carrier Ampholyte\u2010based Isoelectric Focusing: Part I\u2013Analytical Solution<\/a>\u201d, <i>Electrophoresis, <\/i>Vol. 38, 659-666.<\/li>\n<li>Shim, J., Yoo, K. and <u>Dutta, P.<\/u>, 2017, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_EP14.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Steady\u2010state Protein Focusing in Carrier Ampholyte\u2010based Isoelectric Focusing: Part II\u2013Validation and Case Studies<\/a>\u201d, <i>Electrophoresis, <\/i>Vol. 38, 667-676.<\/li>\n<li>Hossan, M.R., Gopmandal, P. P., Dillon, R., and <u>Dutta, P<\/u>., 2016 \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_CSA2.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">A Comprehensive Numerical Investigation of DC Electrophoretic Particle-Particle Interactions and Assembly<\/a>\u201d, <i>Colloids and Surfaces A: Physicochemical and Engineering Aspects, <\/i>Vol. 506, pp 127-137<i>.<\/i><\/li>\n<li>Yoo, K., Song, M. K., Cairns, E. J., and <u>Dutta, P.<\/u>, 2016, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_ECA6.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Numerical and Experimental Investigation of Performance Characteristics of Lithium\/Sulfur Batteries<\/a>\u201d, <i>Electrochimica Acta, <\/i>Vol. 213, pp 174-185<i>.<\/i><\/li>\n<li>Jewel, Y., <u>Dutta, P.<\/u>, and Liu, J., 2016, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_Protein1.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Coarse-grained Simulations of Proton-dependent Conformational Changes in Lactose Permease<\/a>\u201d, <i>Proteins, <\/i>Vol. 84(8), pp 1067-1074<i>.<\/i><\/li>\n<li>Rezanoor, W. and <u>Dutta, P.<\/u>, 2016, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_BMF4.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Combined AC Electroosmosis and Dielectrophoresis for Controlled Rotation of Microparticles<\/a>\u201d, <em>Biomicrofluidics<\/em> Vol. 10(2), pp 024101<em>.<\/em><\/li>\n<li>Jewel, Y., Yoo, K., Liu, J. and <u>Dutta, P.<\/u>, 2016, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/Pros_JNPR.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Self-Assembled Peptides for Coating of Active Sulfur Nanoparticles in Lithium-Sulfur Battery<\/a>\u201d, <em>Journal of Nanoparticle Research, <\/em>Vol. 18:54<em>.<\/em><\/li>\n<li>Yoo, K., Dive, A., Kazemiabnavi, S., Banerjee, S., and <u>Dutta, P.<\/u>, 2016, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_ECA5.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Effects of Operating Temperature on the Electrical performance of a Li-Air Battery Operated with Ionic Liquid Electrolyte<\/a>\u201d, <em>Electrochimica<\/em><em> Acta, <\/em>Vol. 194, pp 317-329<em>.<\/em><\/li>\n<li>Sze, T.J., Liu, J. and <u>Dutta, P.<\/u>, 2015, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_JMM3.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Design and Modeling of a Light Powered Biomimicry Micropump<\/a>\u201d, <em>Journal of Micromechanics and Microengineering, <\/em>Vol. 25, pp 065009.<\/li>\n<li>Yoo, K., Deshpande, A., Banerjee, S., and <u>Dutta, P.<\/u>, 2015, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_ECA4.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Electrochemical Model for Ionic Liquid Electrolytes in Lithium Batteries<\/a>\u201d, <em>Electrochimica<\/em><em> Acta, <\/em>Vol. 176, pp 301-310<em>.<\/em><\/li>\n<li>S. Kazemiabnavi, <u>P. Dutta<\/u> and S. Banerjee<em>, <\/em>2015<em>, <\/em>\u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_PCCP.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">A Density Functional Theory Based Study of the Electron Transfer Reaction at the Cathode-Electrolyte Interface in Lithium-Air Battery<\/a><em>\u201d, Phys. Chem. Chem. Phys.<\/em>, Vol. 17, pp 11740-11751.<\/li>\n<li>Hossan, M.R., Gopmandal, P. P., Dillon, R., and <u>Dutta, P.<\/u>, 2015, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_EP12.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Bipolar Janus Particle Assembly in Microdevice<\/a>\u201d, <em>Electrophoresis, <\/em>Vol. 36(5), pp 722-730.<\/li>\n<li>Yoo, K., Shim, J. and <u>Dutta, P.<\/u>, 2014, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_BMF3.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Effect of Joule Heating on Isoelectric Focusing of Proteins in a Microchannel<\/a>\u201d, <em>Biomicrofluidics<\/em> Vol. 8(6), pp 064125<em>.<\/em><\/li>\n<li>Kazemiabnavi, S., <u>Dutta, P.<\/u>, Banerjee, S., 2014, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_PCCP.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Density Functional Theory Based Study of the Electron Transfer Reaction at the Lithium Metal Anode in Lithium-Air Battery with Ionic Liquid Electrolytes<\/a>\u201d, <em>Journal of Physical Chemistry C, <\/em>Vol. 118(47), pp 27183-27192<em>.<\/em><\/li>\n<li>Yoo, K., Shim, J., Lin, J., and <u>Dutta, P.<\/u>, 2014, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_BMF2.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Mathematical and Numerical Model to Study Two Dimensional Free Flow Isoelectric Focusing<\/a>\u201d, <em>Biomicrofluidics<\/em><em>, <\/em>Vol. 8(3), pp 034111.<\/li>\n<li>Yoo, K. Banerjee, S., and Dutta, P., 2014, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_JPS1.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Modeling of Volume Change Phenomena in a Li-Air Battery<\/a>\u201d, Journal of Power Sources, Vol. 258, pp 340-350.<\/li>\n<li>Jubery, T.Z., Srivastava, S.K., and Dutta, P., 2014, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_EP11.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Dielectrophoretic Separation of bioparticles in Microdevices: A Review<\/a>\u201d, Electrophoresis, Vol. 35, pp 691-713.<\/li>\n<li>Sze, T.J., Liu, J. and Dutta, P., 2014, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_JFE3.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Numerical Modeling of Flow through Phloem Considering Active Loading<\/a>\u201d, ASME Journal of Fluids Engineering, Vol. 136, pp 021206.<\/li>\n<li>Yoo, K., Shim, J., Liu, J. and Dutta, P., 2014, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_EP10.pdf\">Efficient Algorithm for Simulation of Isoelectric Focusing\u201d<\/a>, Electrophoresis, Vol. 35, pp 638-645.<\/li>\n<li>Hossan, M.R., Dillon, R., and <u>Dutta, P.<\/u>, 2014, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_JCP1.pdf\">Hybrid Immersed Interface-Immersed Boundary Methods for AC Dielectrophoresis<\/a>\u201d, <em>Journal of Computational Physics, <\/em>Vol. 270, pp 640-659.<\/li>\n<li>Sze, T.J., and <u>Dutta, P.<\/u>, and Liu, J., 2014, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_JNEM.pdf\">Study of Protein Facilitated Water and Nutrient Transport in Plant Phloem<\/a>\u201d, <em>ASME <\/em><em>Journal of Nanotechnology in Engineering and Medicine, <\/em>Vol. 4, pp. 031005<em>.<\/em><\/li>\n<li>Deshpande, A., Kariyawasam, L., Dutta, P., Banerjee, S., 2013, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_JPCC.pdf\">Enhancement of Lithium Ion Mobility in Ionic Liquid Electrolytes in Presence of Additives<\/a>\u201d, Journal of Physical Chemistry C, Vol. 117(48), pp. 25343-25351.<\/li>\n<li>Jubery, T.Z. and Dutta, P., 2013, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_NHT4.pdf\">A Fast Algorithm to Predict Cell Trajectories in Microdevices using Dielectrophoresis<\/a>\u201d, Journal of Numerical Heat Transfer, Part \u2013 A, Vol. 64, pp. 107-131.<\/li>\n<li>Hossan, M.R., Dillon, R., Roy, A. K., and Dutta, P., 2013, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_JCIS1.pdf\">Modeling and Simulation of Dielectrophoretic Particle-Particle Interaction and Assembly<\/a>\u201d, Journal of Colloids and Interface Sciences, Vol. 394, pp. 619-629.<\/li>\n<li>Sprague, I. B. and Dutta, P., 2013, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_ECA3.pdf\">Improved Kinetics from Ion Advection through Overlapping Electric Double Layers in Nano-Porous Electrodes<\/a>\u201d, Electrochimica Acta, Vol. 91, pp. 20-29.<\/li>\n<li>Jubery, T.Z. and Dutta, P., 2013, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_EP9.pdf\">A New Design for Efficient Dielectrophoretic Separation of Cells in a Microdevice<\/a>\u201d, Electrophoresis, Vol. 34, pp. 643-650.<\/li>\n<li>Mani, K.B., Hossan, M.R. and Dutta, P., 2013, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_IJHMT6.pdf\">Thermal Analysis of Microwave Assisted Bonding of Poly(methyl methacrylate) Substrates in Microfluidic Devices<\/a>\u201d, International Journal of Heat and Mass Transfer, Vol. 58, pp. 229-239.<\/li>\n<li>Sprague, I. B. and Dutta, P., 2012, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_APL2.pdf\">Performance Improvement of Micro-Fuel Cell by Manipulating the Charged Diffuse layer<\/a>\u201d, Applied Physics Letters, Vol. 101, 113903.<\/li>\n<li>Shim, J. and Dutta, P., 2012, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_IJNSNS.pdf\">Joule Heating Effect in Constant Voltage Mode Isotachophoresis in a Microchannel<\/a>\u201d, International Journal of Nonlinear Sciences and Numerical Simulation, Vol. 13(5), pp. 333-344.<\/li>\n<li>Sprague, I. B., and Dutta, P., 2012, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_SIAP1.pdf\">Depth Averaged Analytical Solution for a Laminar Flow Fuel Cell with Electric Double Layer Effects<\/a>,\u201d SIAM Journal on Applied Mathematics, Vol. 72, pp. 1149-1168.<\/li>\n<li>Hossan, M.R. and Dutta, P., 2012, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_IJHMT5.pdf\">Effects of Temperature Dependent Properties in Electromagnetic Heating<\/a>\u201d International Journal of Heat and Mass Transfer, Vol. 55, pp. 3412-3422.<\/li>\n<li>Jubery, T. Z., Hossan, M.R., Bottenus, D., Ivory, C.F., Dong, W., and Dutta, P., 2012, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_BMF1.pdf\">A New Fabrication Technique to Form Complex PMMA Microchannel for Bioseparation<\/a>\u201d Biomicrofluidics, Vol. 6, pp. 016503.<\/li>\n<li>Jubery, T, Prabhu, A., Kim, M.J., and Dutta, P., 2012, \u201c<a href=\"http:\/\/www.mstf.wsu.edu\/articles\/pros_EP8.pdf\">Modeling and Simulation of Nanoparticle Separation through a Solid State Nanopore<\/a>,\u201d Electrophoresis, Vol. 33, pp. 325-333.<\/li>\n<li>Jang, W., Shim, J., Lee, D.Y., Dutta, P., and Cho, K.H., 2011 \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_EP7.pdf\">Rapid Detection of Dysfunctional High-Density Lipoproteins using Isoelectric Focusing Based Microfluidic Device to Diagnose Senescence related Disease<\/a>,\u201d Electrophoresis, Vol. 32, pp. 3415-3423.<\/li>\n<li>Bottenus, D., Hossan, M.R., Ouyang, Y., Dong, W., Dutta, P., and Ivory, C.F., 2011, \u201c<a href=\"http:\/\/www.mstf.wsu.edu\/articles\/pros_LOC3.pdf\">Preconcentration<\/a><a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_LOC3.pdf\">i and Detection of the Phosphorylated forms of Cardiac Troponin I in a Cascade Microchip by Cationic isotachophoresis<\/a>\u201d Lab on a Chip, Vol. 11, 3793-3801.<\/li>\n<li>Qiao, Y., Tang, H., Munske, G. R., Dutta, P., Ivory, C.F., and Dong, W., 2011, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_JF.pdf\">Enhanced Fluorescence Anisotropy Assay for Human Cardiac Troponin I and T Detection<\/a>,\u201d Journal of Fluorescence, Vol. 21(6), pp. 2101-2110.<\/li>\n<li>Sprague, I. B., and Dutta, P., 2011, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_ECA2.pdf\">Role of Diffuse layer in Acidic and Alkaline Fuel Cell<\/a>s,\u201d Electrochimica Acta, Vol. 56, pp 4518-4525.<\/li>\n<li>Bottenus, D., Jubery, T.Z., Dong, W., Ouyang, Y., Dutta, P., and Ivory, C.F., 2011, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_LOC2.pdf\">10,000-Fold Concentration Increase of the Biomarker Cardiac Troponin I in a Reducing Union Microfluidic Chip using Cationic Isotachophoresis<\/a>,\u201d Lab on a Chip, Vol. 11, pp 890-898.<\/li>\n<li>Shim, J, Cho, M., Dutta, P., 2011, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_EP6.pdf\">A Method to Determine Quasi Steady State in Constant Voltage Mode Isotachophoresis<\/a>\u201d Electrophoresis, Vol. 32, pp 988-995.<\/li>\n<li>Sprague, I. B., and Dutta, P., 2011, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_NHT3.pdf\">Modeling of Diffuse Charge Effects in a Microfluidic Based Laminar Flow Fuel Cell<\/a>,\u201d Numerical Heat Transfer: Part A, Vol. 59, pp 1-27.<\/li>\n<li>Bottenus, D., Jubery, T.Z., Dutta, P., and Ivory, C.F., 2011, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_EP5.pdf\">10,000 Fold Concentration Increase in Proteins in a Cascade Microchip using Anionic ITP by a 3D Numerical Simulation with Experimental results<\/a>,\u201d Electrophoresis, Vol. 32, pp 550-562.<\/li>\n<li>Sprague, I., Byun, D., and Dutta, P., 2010, \u201c<a href=\"http:\/\/www.mstf.wsu.edu\/articles\/pros_ECA1.pdf\">Effects of Reactant Crossover and Electrode Dimensions on the Performance of a Microfluidic Based Laminar Flow Fuel Cell<\/a>,\u201d Electrochimica Acta, Vol. 55(28), pp 8579-8589.<\/li>\n<li>Hossan, M.R., Byun, D., and Dutta, P., 2010, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_IJHMT4.pdf\">Analysis of Microwave Heating for Cylindrical Shaped Objects<\/a>,\u201d International Journal of Heat and Mass Transfer, Vol. 53(23-24), pp 5129-5138.<\/li>\n<li>Prabhu, A. S., Jubery, T. Z, Freedman, K., Mulero, R., Dutta, P., Kim, M., 2010, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_JOP_CM.pdf\">Chemically Modified Solid State Nanopores for High Throughput Nanoparticle Separation<\/a>\u201d Journal of Physics- Condensed Matter, Vol. 22(45), 454107.<\/li>\n<li>Byun, D., Nguyen, V.D., Dutta, P., and, Park, H.C., 2010, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_JAPL.pdf\">A Hybrid Inkjet Printer utilizing Electrohydrodynamic Jetting and Piezoelectric Actuation<\/a>\u201d Japanese Journal of Applied Physics, Vol. 49, 060217.<\/li>\n<li>Sprague, I., Dutta, P., and Ha, S., 2010, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_JNMES.pdf\">Flow Rate Effect on Methanol Electro-oxidation in a Microfluidic Laminar Flow System<\/a>,\u201d Journal of New Materials for Electrochemical Systems, Vol. 13(4), 305-313.<\/li>\n<li>Yudistira, H.T., Nguyen, V.D., Dutta, P., and Byun, D., 2010, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_APL1.pdf\">Flight Behavior of Charged Droplets in Electrohydrodynamic Inkjet Printing<\/a>\u201d Applied Physics Letters, Vol. 96, 023503.<\/li>\n<li>Schwarzkopf, J., Penoncello, S.G., and Dutta, P., 2009, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_IJHMT3.pdf\">Enhanced Boiling Heat Transfer in Mesochannels<\/a>\u201d International Journal of Heat and Mass Transfer, Vol. 52, pp. 5802-5813.<\/li>\n<li>Schwarzkopf, J., Crowe, C.T., and Dutta, P., 2009, \u201c<a href=\"http:\/\/www.mstf.wsu.edu\/articles\/pros_JFE2.pdf\">Application of Volume Averaged K-\u03b5 Model to Particle Laden Turbulent Channel Flow<\/a>\u201d Journal of Fluids Engineering, Vol.131, pp. 101301.<\/li>\n<li>Schwarzkopf, J., Crowe, C.T., and Dutta, P., 2009, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_IJMPF.pdf\">Direct Numerical Simulation of Stationary Particles in Homogeneous Turbulent Decay: Application of the K-\u03b5 Model<\/a>\u201d International Journal of Multiphase Flow, Vol. 35, pp. 411-416.<\/li>\n<li>Chein, R., and Dutta, P., 2009, \u201c<a href=\"http:\/\/www.mstf.wsu.edu\/articles\/pros_CSA.pdf\">Effect of Charged Membrane on the Particle Motion through a Nanopore<\/a>,\u201d Colloids and Surfaces A: Physicochemical and Engineering Aspects, Vol. 341, pp 1-12.<\/li>\n<li>Shim, J., Dutta, P., and Ivory, C. F., 2009, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_JMST.pdf\">Parallel Implementation of Finite Volume Schemes for Isoelectric Focusing<\/a>,\u201d Journal of Mechanical Science and Technology, Vol. 23(12), pp. 3169-3178.<\/li>\n<li>Shim, J., Dutta, P., and Ivory, C. F., 2009, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_EP4.pdf\">Dispersion of Protein Bands in a Horse Shoe Microchannel during Isoelectric Focusing<\/a>,\u201d Electrophoresis, Vol. 30, pp 723-731.<\/li>\n<li>Sprague, I., Dutta, P., and Ha, S., 2009, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_JPE.pdf\">Characterization of a Membraneless Direct-Methanol Micro Fuel Cell<\/a>,\u201d <span lang=\"en-GB\">Proc. IMechE, Part A: J. Power and Energy<\/span><span lang=\"en-GB\">, <\/span><span lang=\"en-GB\">Vol. 223<\/span><span lang=\"en-GB\"> (7),<\/span> pp. 799-808<span lang=\"en-GB\">.<\/span><\/li>\n<li>Schwarzkopf, J., Crowe, C. T., and Dutta, P., 2009, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_AIChE3.pdf\">A Turbulence Dissipation Model for Particle Laden Flow<\/a>\u201d AIChE Journal, Vol. 55(6), pp 1416-1425.<\/li>\n<li><span lang=\"de-DE\">Schwarzkopf<\/span>, J., Crowe, C. T., and Dutta, P., Li, B.Q., 2009, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_IJHFF2.pdf\">Atomized Non-equilibrium Two-phase Flow in Mesochannels: Momentum Analysis<\/a>,\u201d International Journal of Heat and Fluid Flow, Vol. 30, pp. 99-107.<\/li>\n<li>Dutta, P. and Morse, J.S. 2008, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_RPN.pdf\">A Review of Recent Patents in Nanofluidics,\u201d <\/a><a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_RPN.pdf\">Recent Patents on Nanotechnology<\/a>, Vol. 2(3), pp 150-159.<\/li>\n<li>Shim, J., Dutta, P., and Ivory, C. F., 2008, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_AIChE2.pdf\">A pK Determination Method for Proteins from Titration Curves Using Principal Component Analysis<\/a>,\u201d AIChE Journal, Vol. 54(9), pp. 2238-2249.<\/li>\n<li>Shim, J., Dutta, P., and Ivory, C. F., 2008, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/Pros_EP3.pdf\">Effects of Ampholyte Concentration on Protein Behavior in on-chip Isoelectric Focusing<\/a>,\u201d Electrophoresis, Vol. 29(5), pp 1026-1035.<\/li>\n<li>Shim, J., Dutta, P., and Ivory, C. F., 2008, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_JNST.pdf\">Effects of Ampholyte Dissociation Constants on Protein Separation in on-Chip Isoelectric Focusing<\/a>,\u201d Journal of Nanoscience and Nanotechnology, Vol. 8, pp 3719-3728.<\/li>\n<li>Wang, Y., Zhe, J., Chung, B., and Dutta, P., 2008, <a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_MFNF2.pdf\">A Rapid Magnetic Particle Driven Micromixer<\/a>,\u201d Microfluidics and Nanofluidics, Vol. 4(5), pp. 375-389.<\/li>\n<li>Shim, J., Dutta, P., and Ivory, C. F., 2007, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_NHT2.pdf\">Finite Volume Methods for Isotachophoretic Separation in Microchannels<\/a>,\u201d Numerical Heat Transfer, Part A: Applications, Vol. 52(5), pp 441-461.<\/li>\n<li>Horiuchi, K., Dutta, P., Ivory, C. F., 2007 \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_AIChE1.pdf\">Electroosmosis with Step Changes in Zeta Potential in Microchannels<\/a>,\u201d AIChE Journal, Vol. 53(10), pp 2521-2533.<\/li>\n<li>Cui, H., Dutta, P., and Ivory, C. F., 2007, \u201c<a href=\"http:\/\/www.mstf.wsu.edu\/articles\/pros_ANA5.pdf\">Automated Electric Valve for Electrokinetic Separation in a Networked Microfluidic Chip<\/a>,\u201d Analytical Chemistry, Vol. 79(4), pp. 1456-1465.<\/li>\n<li>Zhe, J., Jagtiani, A., Dutta, P., Hu, J., and Carletta, J., 2007, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_JMM2.pdf\">A Micromachined High Throughput Coulter Counter for Bioparticle Detection and Counting<\/a>,\u201d Journal of Micromechanics and Microengineering, Vol. 17, pp. 304-313.<\/li>\n<li>Shim, J., Dutta, P., and Ivory, C. F., 2007, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/Pros_EP1.pdf\">Modeling and Simulation of Isoelectric Focusing (IEF) in Two-Dimensional (2-D) Microgeometries<\/a>,\u201d Electrophoresis, Vol. 28, pp. 572-586.<\/li>\n<li>Horiuchi, K. Dutta, P., and Richards, C. D., 2007, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/Pros_MFNF1.pdf\">Experiment and Simulation of Mixed Flows in a Trapezoidal Microchannel<\/a>,\u201d Microfluidics and Nanofluidics, Vol.3, pp. 347-358.<\/li>\n<li>Cui, H., Dutta, P., and Ivory, C. F., 2007 \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/Pros_EP2.pdf\">Isotachophoresis of Proteins in a Networked Microfluidic Chip: Experiment and 2-D Simulation<\/a>,\u201d Electrophoresis, Vol. 28, pp. 1138-1145.<\/li>\n<li>Wang, Y., Zhe, J., Dutta, P., and Chung, B., 2007, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_JFE1.pdf\">A Microfluidic Mixer Utilizing Electrokinetic Relay Switching and Asymmetric Flow Geometries<\/a>,\u201d ASME Journal of Fluids Engineering, Vol. 129, pp. 395-403.<\/li>\n<li>Horiuchi, K. and Dutta, P., 2006, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_JSME.pdf\">Heat Transfer Characteristics in Mixed Electroosmotic and Pressure Driven Flows<\/a>,\u201d JSME International Journal Series B (Fluids and Thermal Engineering), Vol. 49, pp. 812-819.<\/li>\n<li>Mamun, N. and Dutta, P., 2006, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_JMMM2.pdf\">Patterning of Platinum Microelectrodes in Polymeric Microfluidic Chips<\/a>,\u201d Journal of Microlithography, Microfabrication and Microsystems, Vol. 5(3), pp. 039701-6.<\/li>\n<li>Dutta, P., Horiuchi, K., and Yin, H. M. 2006, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_CMA.pdf\">Thermal Characteristics of Mixed Electroosmotic and Pressure Driven Microflows<\/a>,\u201d Computers and Mathematics with Applications, Vol. 52(5), pp. 651-670.<\/li>\n<li>Horiuchi, K. and Dutta, P., 2006, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_LOC1.pdf\">Electrokinetic Flow Control in Microfluidic Chips using a Field-Effect Transistor<\/a>,\u201d Lab On a Chip, Vol. 6, pp. 714-723.<\/li>\n<li>Salgado, J. D., Horiuchi, K, and Dutta, P., 2006, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_JMM1.pdf\">A Conductivity Based Interface Tracking Method for Microfluidic Applications<\/a>,\u201d Journal of Micromechanics and Microengineering, Vol. 16, pp. 920-928.<\/li>\n<li>Horiuchi, K., Dutta, P., and Hossain, A., 2006, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_JEM.pdf\">Joule Heating Effects in Mixed Electroosmotic and Pressure Driven Microflows under Constant Wall Heat Flux<\/a>,\u201d Journal of Engineering Mathematics, Vol. 54, pp. 159-180.<\/li>\n<li>Cui, H., Horiuchi, K., Dutta, P., and Ivory, C. F., 2005 \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_ANA4.pdf\">Multistage Isoelectric Focusing in a Polymeric Microfluidic Chip<\/a>,\u201d Analytical Chemistry, Vol. 77, pp. 7878-7886.<\/li>\n<li>Hossain, A., Alam, M., Yonge, D. R., and Dutta, P., 2005, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_geoscience.pdf\">Finite Element Modeling of Cr(VI) Reduction by Shewanella Oneidensis MR-1 Employing the Duel Enzyme Kinetic Model<\/a>,\u201d Computers and Geosciences, Vol. 31, pp. 1286-1292.<\/li>\n<li>Cui, H., Horiuchi, K., Dutta, P., Ivory, C. F., 2005 \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_ANA3.pdf\">Isoelectric Focusing in a Poly-di-methyl-siloxane Microfluidic Chip<\/a>,\u201d Analytical Chemistry, Vol. 77, pp. 1303-1309.<\/li>\n<li>Hossain, A., Alam, M., Yonge, D. R., and Dutta, P., 2005, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_air_water_soil.pdf\">Efficiency and Flow Regime of a Highway Stormwater Detention Pond in Washington, USA<\/a>,\u201d Water, Air, and Soil Pollution, Vol. 164, pp. 79-89.<\/li>\n<li>Cheng, G. J., Pirzada, D., and Dutta, P., 2005, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_JMMM1.pdf\">Design and Fabrication of a Hybrid Nanofluidic Channel<\/a>,\u201d Journal of Microlithography, Microfabrication and Microsystems, Vol. 4(1), pp. 013009.<\/li>\n<li>Dutta, P. and Hossain, A., 2005, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_IJHFF1.pdf\">Internal Cooling Augmentation in Rectangular Channel using Two Inclined Baffles<\/a>,\u201d International Journal of Heat and Fluid Flow, Vol. 26(2), pp. 223-232.<\/li>\n<li>Horiuchi, K. and Dutta, P., 2004, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_IJHMT2.pdf\">Joule Heating Effects in Electroosmotically Driven Microchannel Flows<\/a>,\u201d International Journal of Heat and Mass Transfer, Vol. 47, pp. 3085-3095.<\/li>\n<li>Dutta, P., Beskok, A., and Warburton, T. C., 2002, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_NHT1.pdf\">Numerical Simulation of Mixed Electroosmotic\/Pressure Driven Microflows<\/a>,\u201d Numerical Heat Transfer, Part A, Vol. 41, pp. 131-148.<\/li>\n<li>Dutta, P., Beskok, A., and Warburton, T. C., 2002, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_MEMS.pdf\">Electroosmotic Flow Control in Complex Microgeometries<\/a>,\u201d ASME &amp; IEEE Journal of Micro Electro Mechanical Systems (JMEMS), Vol. 11(1), pp. 36-44.<\/li>\n<li>Dutta, P. and Beskok, A., 2001, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_ANA2.pdf\">Analytical Solution of Time Periodic Electroosmotic Flows: Analogies to Stokes\u2019 Second Problem<\/a>,\u201d Analytical Chemistry, Vol. 73, pp. 5097-5102.<\/li>\n<li>Dutta, P. and Beskok, A., 2001, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_ANA1.pdf\">Analytical Solution of Combined Electroosmotic \/Pressure Driven Flows in Two Dimensional Straight Channels: Finite Double Layer Effects<\/a>,\u201d Analytical Chemistry, Vol. 73, pp. 1979-1986.<\/li>\n<li>Dutta, S., Dutta, P., Jones, R.E., and Khan, J.A., 1998, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2019\/03\/pros_JHT1.pdf\">Heat Transfer Coefficient Enhancement with Perforated Baffles<\/a>,\u201d ASME Journal of Heat Transfer, Vol. 120(3), pp 795-797.<\/li>\n<li>Dutta, P., Khan, R.U., Salam, A., and Uddin, M.W., 1997, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_JPV.pdf\">Stability Analysis of a Toroidal Pipe Reducer Under Uniform External Pressure<\/a>,\u201d Int. Journal of Pressure Vessels and Pipings, Vol. 72, pp 203-218.<\/li>\n<li>Dutta, P. and Dutta, S., 1997, \u201c<a href=\"https:\/\/wpcdn.web.wsu.edu\/wp-labs\/uploads\/sites\/1681\/2017\/09\/pros_IJHMT1.pdf\">Effect of Baffle Size, Perforation, and Orientation on Internal Heat Transfer Enhancement<\/a>,\u201d International Journal of Heat and Mass Transfer, Vol. 41(19), pp 3005-3013.<\/li>\n<\/ol><\/div>\n<\/section>\n","protected":false},"excerpt":{"rendered":"<p>Billah, M. M., Hua, D., Dutta, P., and Liu, J., 2023, \u201cEffects of Receptor Properties on Particle Internalization through Receptor-mediated Endocytosis\u201d,<em> Soft Matter,<\/em> in Press<br \/> Billah, M. M., Khan, A. I., Liu, J., and Dutta, P., 2023, \u201cPhysics-Informed Deep Neural Network for Inverse Heat Transfer Problems in Materials\u201d,<em> Materials Today Communications,<\/em> Vol. 35, 106336.<br \/> Khan, A. I., Reynolds, O., Thiessen, D. B., Adesope, O. O., Van Wie, B. J., Dutta, P., 2023 \u201cDesign, fabrication, Testing, and Implementation of a Low-Cost Venturi Meter for Hands-on Active Learning\u201d <em>International Journal of Engineering Education, <\/em>Vol. 39(4), 845-859.<br \/> Dutta, P. and Gas, B., 2023, \u201cEditorial\u201d <em>Electrophoresis, &#8230; <a href=\"https:\/\/labs.wsu.edu\/mstf\/journal-articles\/\" class=\"more-link\"><span class=\"more-default\">&raquo; More &#8230;<\/span><\/a><\/em><\/p>\n","protected":false},"author":2319,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"template-builder.php","meta":[],"wsuwp_university_location":[],"wsuwp_university_org":[],"_links":{"self":[{"href":"https:\/\/labs.wsu.edu\/mstf\/wp-json\/wp\/v2\/pages\/143"}],"collection":[{"href":"https:\/\/labs.wsu.edu\/mstf\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/labs.wsu.edu\/mstf\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/labs.wsu.edu\/mstf\/wp-json\/wp\/v2\/users\/2319"}],"replies":[{"embeddable":true,"href":"https:\/\/labs.wsu.edu\/mstf\/wp-json\/wp\/v2\/comments?post=143"}],"version-history":[{"count":50,"href":"https:\/\/labs.wsu.edu\/mstf\/wp-json\/wp\/v2\/pages\/143\/revisions"}],"predecessor-version":[{"id":1077,"href":"https:\/\/labs.wsu.edu\/mstf\/wp-json\/wp\/v2\/pages\/143\/revisions\/1077"}],"wp:attachment":[{"href":"https:\/\/labs.wsu.edu\/mstf\/wp-json\/wp\/v2\/media?parent=143"}],"wp:term":[{"taxonomy":"wsuwp_university_location","embeddable":true,"href":"https:\/\/labs.wsu.edu\/mstf\/wp-json\/wp\/v2\/wsuwp_university_location?post=143"},{"taxonomy":"wsuwp_university_org","embeddable":true,"href":"https:\/\/labs.wsu.edu\/mstf\/wp-json\/wp\/v2\/wsuwp_university_org?post=143"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}