A new force field model for the simulation of transport properties of imidazolium-based ionic liquids VV Chaban, IV Voroshylova, ON Kalugin Physical Chemistry Chemical Physics 13 (17), 7910-7920, 2011 | 210 | 2011 |
Polarizability versus mobility: atomistic force field for ionic liquids V Chaban Physical Chemistry Chemical Physics 13 (35), 16055-16062, 2011 | 188 | 2011 |
Acetonitrile boosts conductivity of imidazolium ionic liquids VV Chaban, IV Voroshylova, ON Kalugin, OV Prezhdo The Journal of Physical Chemistry B 116 (26), 7719-7727, 2012 | 163 | 2012 |
Water boiling inside carbon nanotubes: toward efficient drug release VV Chaban, OV Prezhdo ACS nano 5 (7), 5647-5655, 2011 | 137 | 2011 |
Ionic and molecular liquids: working together for robust engineering VV Chaban, OV Prezhdo The journal of physical chemistry letters 4 (9), 1423-1431, 2013 | 113 | 2013 |
Covalent linking greatly enhances photoinduced electron transfer in fullerene-quantum dot nanocomposites: Time-domain ab initio study VV Chaban, VV Prezhdo, OV Prezhdo The Journal of Physical Chemistry Letters 4 (1), 1-6, 2013 | 101 | 2013 |
Conductometric study of binary systems based on ionic liquids and acetonitrile in a wide concentration range ON Kalugin, IV Voroshylova, AV Riabchunova, EV Lukinova, VV Chaban Electrochimica Acta 105, 188-199, 2013 | 98 | 2013 |
Heat-driven release of a drug molecule from carbon nanotubes: a molecular dynamics study VV Chaban, TI Savchenko, SM Kovalenko, OV Prezhdo The Journal of Physical Chemistry B 114 (42), 13481-13486, 2010 | 85 | 2010 |
Uniform diffusion of acetonitrile inside carbon nanotubes favors supercapacitor performance ON Kalugin, VV Chaban, VV Loskutov, OV Prezhdo Nano letters 8 (8), 2126-2130, 2008 | 85 | 2008 |
Nanoscale carbon greatly enhances mobility of a highly viscous ionic liquid VV Chaban, OV Prezhdo ACS nano 8 (8), 8190-8197, 2014 | 79 | 2014 |
A new force field model of 1-butyl-3-methylimidazolium tetrafluoroborate ionic liquid and acetonitrile mixtures VV Chaban, OV Prezhdo Physical Chemistry Chemical Physics 13 (43), 19345-19354, 2011 | 78 | 2011 |
Rationalizing the role of the anion in CO 2 capture and conversion using imidazolium-based ionic liquid modified mesoporous silica AS Aquino, FL Bernard, JV Borges, L Mafra, F Dalla Vecchia, MO Vieira, ... RSC advances 5 (79), 64220-64227, 2015 | 74 | 2015 |
Confinement by carbon nanotubes drastically alters the boiling and critical behavior of water droplets VV Chaban, VV Prezhdo, OV Prezhdo ACS nano 6 (3), 2766-2773, 2012 | 71 | 2012 |
Selective chemical binding enhances cesium tolerance in plants through inhibition of cesium uptake E Adams, V Chaban, H Khandelia, R Shin Scientific Reports 5 (1), 8842, 2015 | 70 | 2015 |
Cellulose based poly (ionic liquids): Tuning cation-anion interaction to improve carbon dioxide sorption FL Bernard, RB Duczinski, MF Rojas, MCC Fialho, LA Carreno, ... Fuel 211, 76-86, 2018 | 67 | 2018 |
Systematic refinement of Canongia Lopes-Pádua force field for pyrrolidinium-based ionic liquids VV Chaban, IV Voroshylova The Journal of Physical Chemistry B 119 (20), 6242–6249, 2015 | 61 | 2015 |
A highly viscous imidazolium ionic liquid inside carbon nanotubes T Ohba, VV Chaban The Journal of Physical Chemistry B 118 (23), 6234-6240, 2014 | 61 | 2014 |
How toxic are ionic liquid/acetonitrile mixtures? VV Chaban, OV Prezhdo The Journal of Physical Chemistry Letters 2 (19), 2499-2503, 2011 | 61 | 2011 |
Surface Active Ionic Liquids as Catalyst for CO2 Conversion to Propylene Carbonate MO Vieira, WF Monteiro, BS Neto, R Ligabue, VV Chaban, S Einloft Catalysis Letters 148, 108-118, 2018 | 58 | 2018 |
Nitrogen–nitrogen bonds undermine stability of N-doped graphene VV Chaban, OV Prezhdo Journal of the American Chemical Society 137 (36), 11688-11694, 2015 | 58 | 2015 |