Adsorptive removal of congo red, a carcinogenic textile dye by chitosan hydrobeads: Binding mechanism, equilibrium and kinetics S Chatterjee, S Chatterjee, BP Chatterjee, AK Guha Colloids and Surfaces A: Physicochemical and Engineering Aspects 299 (1-3 …, 2007 | 503 | 2007 |
Adsorption of congo red by chitosan hydrogel beads impregnated with carbon nanotubes S Chatterjee, MW Lee, SH Woo Bioresource technology 101 (6), 1800-1806, 2010 | 499 | 2010 |
Enhanced adsorption of congo red from aqueous solutions by chitosan hydrogel beads impregnated with cetyl trimethyl ammonium bromide S Chatterjee, DS Lee, MW Lee, SH Woo Bioresource Technology 100 (11), 2803-2809, 2009 | 394 | 2009 |
The removal of nitrate from aqueous solutions by chitosan hydrogel beads S Chatterjee, SH Woo Journal of hazardous materials 164 (2-3), 1012-1018, 2009 | 368 | 2009 |
Adsorption of a model anionic dye, eosin Y, from aqueous solution by chitosan hydrobeads S Chatterjee, S Chatterjee, BP Chatterjee, AR Das, AK Guha Journal of colloid and interface science 288 (1), 30-35, 2005 | 339 | 2005 |
Nitrate removal from aqueous solutions by cross-linked chitosan beads conditioned with sodium bisulfate S Chatterjee, DS Lee, MW Lee, SH Woo Journal of Hazardous Materials 166 (1), 508-513, 2009 | 254 | 2009 |
Congo red adsorption from aqueous solutions by using chitosan hydrogel beads impregnated with nonionic or anionic surfactant S Chatterjee, DS Lee, MW Lee, SH Woo Bioresource Technology 100 (17), 3862-3868, 2009 | 222 | 2009 |
Clarification of fruit juice with chitosan S Chatterjee, S Chatterjee, BP Chatterjee, AK Guha Process biochemistry 39 (12), 2229-2232, 2004 | 204 | 2004 |
Dual-responsive (pH/temperature) Pluronic F-127 hydrogel drug delivery system for textile-based transdermal therapy S Chatterjee, P Hui, C Kan, W Wang Scientific Reports 9, 11658, 2019 | 167 | 2019 |
Review of Stimuli-Responsive Polymers in Drug Delivery and Textile Application S Chatterjee, P Hui Molecules 24, 2547, 2019 | 148 | 2019 |
Removal of Reactive Black 5 by zero-valent iron modified with various surfactants S Chatterjee, SR Lim, SH Woo Chemical Engineering Journal 160 (1), 27-32, 2010 | 146 | 2010 |
Thermoresponsive hydrogels and their biomedical applications: Special insight into their applications in textile based transdermal therapy S Chatterjee, P Hui, C Kan Polymers 10 (5), 480, 2018 | 145 | 2018 |
An E-nose made of carbon nanotube-based quantum resistive sensors for the detection of eighteen polar/nonpolar VOC biomarkers of lung cancer S Chatterjee, M Castro, JF Feller journal of Materials Chemistry B 1, 4563-4575, 2013 | 142 | 2013 |
Enhanced mechanical strength of chitosan hydrogel beads by impregnation with carbon nanotubes S Chatterjee, MW Lee, SH Woo Carbon 47 (12), 2933-2936, 2009 | 104 | 2009 |
A new type of chitosan hydrogel sorbent generated by anionic surfactant gelation S Chatterjee, T Chatterjee, SH Woo Bioresource technology 101 (11), 3853-3858, 2010 | 101 | 2010 |
Nanoencapsulation of curcumin in polyurethane and polyurea shells by an emulsion diffusion method H Souguir, F Salaün, P Douillet, I Vroman, S Chatterjee Chemical Engineering Journal 221, 133-145, 2013 | 99 | 2013 |
Enhancement of growth and chitosan production by Rhizopus oryzae in whey medium by plant growth hormones S Chatterjee, S Chatterjee, BP Chatterjee, AK Guha International journal of biological macromolecules 42 (2), 120-126, 2008 | 94 | 2008 |
Adsorption of a cationic dye, methylene blue, on to chitosan hydrogel beads generated by anionic surfactant gelation S Chatterjee, T Chatterjee, SR Lim, SH Woo Environmental technology 32 (13), 1503-1514, 2011 | 92 | 2011 |
Influence of the polyethyleneimine grafting on the adsorption capacity of chitosan beads for Reactive Black 5 from aqueous solutions S Chatterjee, T Chatterjee, SH Woo Chemical Engineering Journal 166 (1), 168-175, 2011 | 88 | 2011 |
Enhanced coagulation of bentonite particles in water by a modified chitosan biopolymer T Chatterjee, S Chatterjee, SH Woo Chemical engineering journal 148 (2-3), 414-419, 2009 | 84 | 2009 |