Anshu Pandey, Ph.D.
Affiliations: | 2009 | Chemistry | University of Chicago, Chicago, IL |
Area:
Quantum Confined Semiconductors, Plasmonic Metal NanoparticlesGoogle:
"Anshu Pandey"Mean distance: 13.54
Parents
Sign in to add mentorPhilippe Guyot-Sionnest | grad student | 2009 | Chicago | |
(Electronic relaxation in semiconductor nanostructures.) |
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Publications
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Roy P, Gogoi P, Pandey A. (2024) Solution grown quantum dots for quantum science. Journal of Physics. Condensed Matter : An Institute of Physics Journal |
Das S, Bhattacharyya B, Mohanty A, et al. (2024) Boosting quantum efficiency and suppressing self-absorption in CdS quantum dots through interface engineering. Nanoscale |
Mondal P, Saha SK, Roy P, et al. (2024) Plasmon Mediated Single Photon Emission from a Nanocrystal Ensemble. The Journal of Physical Chemistry Letters. 7556-7565 |
Roy P, Pandey A. (2024) Engineering quantum dots for improved single photon emission statistics. The Journal of Chemical Physics. 160 |
Bhattacharyya B, Mukherjee A, Mahadevu R, et al. (2021) Tuning radiative lifetimes in semiconductor quantum dots. The Journal of Chemical Physics. 154: 074707 |
Mahadevu R, Pandey A. (2018) Thermodynamic Model for Quantum Dot Assemblies Formed Because of Charge Transfer. Acs Omega. 3: 266-272 |
Bhattacharyya B, Pandit T, Rajasekar GP, et al. (2018) Optical Transparency Enabled by Anomalous Stokes Shift in Visible Light-Emitting CuAlS-Based Quantum Dots. The Journal of Physical Chemistry Letters. 4451-4456 |
Sugathan A, Bhattacharyya B, Kishore VVR, et al. (2018) Why does CuFeS2 Resemble Gold? The Journal of Physical Chemistry Letters |
Bhattacharyya B, Gahlot K, Viswanatha R, et al. (2018) Optical Signatures of Impurity-Impurity Interactions in Copper Containing II-VI Alloy Nanocrystals. The Journal of Physical Chemistry Letters |
Mukherjee A, Bhattacharyya B, Pandey A. (2018) Temporal evolution of radiative rate reveals the localization of holes in CuInS2-based quantum dots Nano Futures. 2: 045007 |