Segui
AMAL KISHORE
AMAL KISHORE
Indian Institute of Science, Bangalore
Email verificata su iisc.ac.in
Titolo
Citata da
Citata da
Anno
Spin-current modulation in hexagonal buckled ZnTe and CdTe monolayers for self-powered flexible-piezo-spintronic devices
MK Mohanta, F Is, A Kishore, A De Sarkar
ACS Applied Materials & Interfaces 13 (34), 40872-40879, 2021
372021
Two-dimensional ultrathin van der Waals heterostructures of indium selenide and boron monophosphide for superfast nanoelectronics, excitonic solar cells, and digital data …
MK Mohanta, A Kishore, A De Sarkar
Nanotechnology 31 (49), 495208, 2020
342020
Unconventional anisotropy in excitonic properties and carrier mobility in iodine-based XTeI (X= Ga, in) monolayers for visible-light photocatalytic water splitting
A Kishore, N Tripathy, A De Sarkar
The Journal of Physical Chemistry C 127 (4), 1992-2002, 2023
202023
Regulating excitonic effects in non-oxide based XPSe 3 (X= Cd, Zn) monolayers towards enhanced photocatalysis for overall water splitting
A Kishore, H Seksaria, A Arora, A De Sarkar
Physical Chemistry Chemical Physics 25 (30), 20337-20349, 2023
162023
Probing 2D Exciton Dynamics of Non-Hydrogenic Anisotropic Rydberg Spectra in Anomalous Screening Regime
H Seksaria, A Kishore, A De Sarkar
The Journal of Physical Chemistry C 128 (15), 6487-6495, 2024
32024
Temperature-driven journey of dark excitons to efficient photocatalytic water splitting in β-AsP
H Seksaria, A Kishore, A De Sarkar
Physical Chemistry Chemical Physics 26 (35), 22882-22893, 2024
32024
Dielectric Screening and Magnetic Force Modulated Spontaneous Exciton Dissociation for Enhanced Photocatalytic Water Splitting: Insights into Exciton Excited States
A Kishore, H Seksaria, A De Sarkar
The Journal of Physical Chemistry C, 2024
12024
Physical origin and control of exciton spatial localization in high-κ MOene monolayers under external perturbations
A Kishore, H Seksaria, A De Sarkar
Journal of Physics: Condensed Matter, 2025
2025
Il sistema al momento non può eseguire l'operazione. Riprova più tardi.
Articoli 1–8