Supriya Saha
Affiliations: | 2016-2017 | Nagoya University | Nagoya University, Nagoya-shi, Aichi-ken, Japan |
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Singhania A, Dutta M, Saha S, et al. (2020) Speedy one-pot electrochemical synthesis of giant octahedrons from generated pyrrolidinyl PAMAM dendrimer. Soft Matter |
Kar M, Saha S, Sarkar R, et al. (2020) Comparative Study on the Photovoltaic Properties of ZnX (X = S, Se, Te) QD/CNT Inorganic/Organic Hybrid Nanocomposites Journal of Physical Chemistry C. 124: 7652-7660 |
Saha S, Page AJ. (2016) The influence of magnetic moment on carbon nanotube nucleation Carbon. 105: 136-143 |
Page AJ, Saha S, Li HB, et al. (2015) Quantum Chemical Simulation of Carbon Nanotube Nucleation on Al2O3 Catalysts via CH4 Chemical Vapor Deposition. Journal of the American Chemical Society |
Saha S, Sarkar P. (2014) Understanding the interaction of DNA-RNA nucleobases with different ZnO nanomaterials. Physical Chemistry Chemical Physics : Pccp. 16: 15355-66 |
Sarkar S, Saha S, Pal S, et al. (2014) Electronic structure and bandgap engineering of CdTe nanotubes and designing the CdTe nanotube–fullerene hybrid nanostructures for photovoltaic applications Rsc Advances. 4: 14673 |
Saha S, Sarkar P. (2014) Controlling the electronic energy levels of ZnO quantum dots using mixed capping ligands Rsc Advances. 4: 1640-1645 |
Saha S, Sarkar S, Pal S, et al. (2013) Ligand mediated tuning of the electronic energy levels of ZnO nanoparticles Rsc Adv.. 3: 532-539 |
Saha S, Sarkar S, Pal S, et al. (2013) Tuning the Energy Levels of ZnO/ZnS Core/Shell Nanowires To Design an efficient Nanowire-Based Dye-Sensitized Solar Cell The Journal of Physical Chemistry C. 117: 15890-15900 |
Saha S, Sarkar P. (2013) Electronic structure of ZnO/ZnS core/shell quantum dots Chemical Physics Letters. 555: 191-195 |