A microwave synthesized Cu x S and graphene oxide nanoribbon composite as a highly efficient counter electrode for quantum dot sensitized solar cells D Ghosh, G Halder, A Sahasrabudhe, S Bhattacharyya Nanoscale 8 (20), 10632-10641, 2016 | 64 | 2016 |
Zinc-diffused silver indium selenide quantum dot sensitized solar cells with enhanced photoconversion efficiency G Halder, S Bhattacharyya Journal of Materials Chemistry A 5 (23), 11746-11755, 2017 | 58 | 2017 |
Plight of Mn doping in colloidal CdS quantum dots to boost the efficiency of solar cells G Halder, S Bhattacharyya The Journal of Physical Chemistry C 119 (24), 13404-13412, 2015 | 51 | 2015 |
Photocatalyzed Borylation Using Water Soluble Quantum Dots SBDM Hediyala B. Chandrashekar, Arun Maji, Ganga Halder, Sucheta Banerjee Chem. Commun., 2019 | 44 | 2019 |
Interface engineering in quantum-dot-sensitized solar cells G Halder, D Ghosh, MY Ali, A Sahasrabudhe, S Bhattacharyya Langmuir 34 (35), 10197-10216, 2018 | 42 | 2018 |
One-step synthesis, structural and optical characterization of self-assembled ZnO nanoparticle clusters with quench-induced defects B Debnath, G Halder, S Bhattacharyya Science of Advanced Materials 6 (6), 1160-1169, 2014 | 35 | 2014 |
Cation exchange in Zn–Ag–In–Se core/alloyed shell quantum dots and their applications in photovoltaics and water photolysis G Halder, A Ghosh, S Parvin, S Bhattacharyya Chemistry of Materials 31 (1), 161-170, 2018 | 21 | 2018 |
Photoanode and Counter Electrode Strategies to Enhance the Power Conversion Efficiency of Quantum Dot Sensitized Solar Cells G Halder Indian Institute of Science Education and Research Kolkata, 2019 | | 2019 |
Smart Materials: Methods and Applications–2017 (SMMA-2017) PP14 G Halder, S Bhattacharyya | | |