1 |
Molecular-Thermodynamic Framework to Predict the Micellization Behavior of Mixtures of Fluorocarbon-Based and Hydrocarbon-Based Surfactants Iyer J, Blankschtein D Journal of Physical Chemistry B, 118(9), 2377, 2014 |
2 |
Computer Simulation-Molecular-Thermodynamic Framework to Predict the Micellization Behavior of Mixtures of Surfactants: Application to Binary Surfactant Mixtures Iyer J, Mendenhall JD, Blankschtein D Journal of Physical Chemistry B, 117(21), 6430, 2013 |
3 |
Dynamic Average-Value Modeling of 120 degrees VSI-Commutated Brushless DC Motors With Trapezoidal Back EMF Tabarraee K, Iyer J, Atighechi H, Jatskevich J IEEE Transactions on Energy Conversion, 27(2), 296, 2012 |
4 |
Are Ellipsoids Feasible Micelle Shapes? An Answer Based on a Molecular-Thermodynamic Model of Nonionic Surfactant Micelles Iyer J, Blankschtein D Journal of Physical Chemistry B, 116(22), 6443, 2012 |
5 |
Microphase segregation of PEO-PAMAM linear-dendritic diblock copolymers Johnson MA, Iyer J, Hammond PT Macromolecules, 37(7), 2490, 2004 |
6 |
Multiparticle effects on the interactions of complex colloidal dispersions Olugebefola SC, Park SY, Banerjee P, Mayes AM, Santini CMB, Iyer J, Hammond PT Langmuir, 18(4), 1098, 2002 |
7 |
Neutron reflectivity of linear-dendritic diblock copolymer monolayers Johnson MA, Santini CMB, Iyer J, Satija S, Ivkov R, Hammond PT Macromolecules, 35(1), 231, 2002 |
8 |
Langmuir behavior and ultrathin films of new linear-dendritic diblock copolymers Iyer J, Hammond PT Langmuir, 15(4), 1299, 1999 |
9 |
Synthesis and solution properties of new linear-dendritic diblock copolymers Iyer J, Fleming K, Hammond PT Macromolecules, 31(25), 8757, 1998 |