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Sapanbir Thind
Sapanbir Thind
PhD, Lakehead University. PDF University of Victoria
Dirección de correo verificada de uvic.ca
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Nanostructured materials for water splitting-state of the art and future needs: A mini-review
S Chen, SS Thind, A Chen
Electrochemistry Communications 63, 10-17, 2016
1522016
Synthesis of mesoporous nitrogen–tungsten co-doped TiO2 photocatalysts with high visible light activity
SS Thind, G Wu, A Chen
Applied Catalysis B: Environmental 111, 38-45, 2012
1172012
Electrocatalytic Enhancement of Salicylic Acid Oxidation at Electrochemically Reduced TiO2 Nanotubes
X Chang, SS Thind, A Chen
ACS Catalysis 4 (8), 2616-2622, 2014
732014
A novel nanoporous α-C3N4 photocatalyst with superior high visible light activity
G Wu, SS Thind, J Wen, K Yan, A Chen
Applied Catalysis B: Environmental 142, 590-597, 2013
682013
Significant enhancement in the photocatalytic activity of N, W co-doped TiO2 nanomaterials for promising environmental applications
SS Thind, G Wu, M Tian, A Chen
Nanotechnology 23 (47), 475706, 2012
522012
High-performance supercapacitor based on tantalum iridium oxides supported on tungsten oxide nanoplatelets
SS Thind, X Chang, JS Wentzell, A Chen
Electrochemistry Communications 67, 1-5, 2016
492016
Direct growth and photo-electrochemical study of WO3 nanostructured materials
SS Thind, M Tian, A Chen
Electrochemistry Communications 43, 13-17, 2014
322014
Photoelectrochemical degradation of acetaminophen and valacyclovir using nanoporous titanium dioxide
G Xie, X Chang, BR Adhikari, SS Thind, A Chen
Chinese Journal of Catalysis 37 (7), 1062-1069, 2016
312016
Significant enhancement of the photoelectrochemical activity of nanoporous TiO2 for environmental applications
X Chang, SS Thind, M Tian, MM Hossain, A Chen
Electrochimica Acta 173, 728-735, 2015
292015
Quantitative Structure–Reactivity Study of Electrochemical Oxidation of Phenolic Compounds at the SnO2–Based Electrode
M Tian, SS Thind, M Simko, F Gao, A Chen
The Journal of Physical Chemistry A 116 (11), 2927-2934, 2012
282012
Fabrication and photoelectrochemical study of WO3-based bifunctional electrodes for environmental applications
SS Thind, K Rozic, F Amano, A Chen
Applied Catalysis B: Environmental 176, 464-471, 2015
262015
Synthesis and photoelectrochemical studies of N, Zr co-doped mesoporous titanium dioxide
H Liu, SS Thind, G Wu, J Wen, A Chen
Journal of Electroanalytical Chemistry 736, 93-100, 2015
242015
Electrochemical oxidation of 4-chlorophenol for wastewater treatment using highly active UV treated TiO2 nanotubes
M Tian, SS Thind, JS Dondapati, X Li, A Chen
Chemosphere 209, 182-190, 2018
232018
Significant enhancement of the photoelectrochemical activity of TiO2 nanotubes
M Tian, SS Thind, S Chen, N Matyasovzsky, A Chen
Electrochemistry communications 13 (11), 1186-1189, 2011
232011
Electrochemical oxidation of lignin at electrochemically reduced TiO2 nanotubes
X Chang, J van der Zalm, SS Thind, A Chen
Journal of Electroanalytical Chemistry, 114049, 2020
222020
Collagen Type I–Gelatin Methacryloyl Composites: Mimicking the Tumor Microenvironment
KP Valente, SS Thind, M Akbari, A Suleman, AG Brolo
ACS Biomaterials Science & Engineering 5 (6), 2887-2898, 2019
202019
Facile synthesis of mesoporous carbon nitride and titanium dioxide nanocomposites with enhanced visible light photocatalytic activity
SS Thind, CC Mustapic, J Wen, CD Goodwin, A Chen
New Journal of Chemistry 41 (19), 10542-10549, 2017
182017
Efficient bacterial disinfection based on an integrated nanoporous titanium dioxide and ruthenium oxide bifunctional approach
BR Adhikari, SS Thind, S Chen, H Schraft, A Chen
Journal of hazardous materials 356, 73-81, 2018
172018
A highly efficient photocatalytic system for environmental applications based on TiO 2 nanomaterials
SS Thind, M Paul, JB Hayden, A Joshi, D Goodlett, JS McIndoe
Industrial Chemistry & Materials 1 (3), 431-442, 2023
82023
Raman maps reveal heterogeneous hydrogenation on carbon materials
BG daFonseca, SS Thind, AG Brolo
Journal of Raman Spectroscopy 52 (2), 516-524, 2021
82021
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Artículos 1–20