Suman Kalyan Pal
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Explore the profile of Suman Kalyan Pal including associated specialties, affiliations and a list of published articles.
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Articles
21
Citations
40
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Recent Articles
1.
Soni A, Kamath N, Shen Y, Seksaria H, De Sarkar A, Chang W, et al.
Sci Rep
. 2025 Mar;
15(1):7537.
PMID: 40038531
The intrinsic properties of two-dimensional (2D) transition-metal dichalcogenides (TMDs) are profoundly influenced by their interface conditions. Engineering the TMD/substrate interface is crucial for harnessing the unique optoelectronic properties of 2D...
2.
Kundar M, Gayen K, Ray R, Kushavah D, Pal S
Nanoscale
. 2024 Aug;
16(34):16159-16171.
PMID: 39133263
Resistive switching random-access memory (ReRAM) devices based on organic-inorganic halide perovskites (OIHPs) have emerged as a new class of data storage devices. Recently, two-dimensional (2D) OIHPs have attracted much attention...
3.
Soni A, Ghosal S, Kundar M, Pati S, Pal S
ACS Appl Mater Interfaces
. 2024 Jun;
16(27):35841-35851.
PMID: 38935613
Two-dimensional (2D) transition metal dichalcogenides (TMDs) and perovskites hold substantial promise for various optoelectronic applications such as light emission, photodetection, and energy harvesting. However, each of these materials possesses certain...
4.
Bhandari S, Kundar M, Chakraborty M, Pal S
J Chem Phys
. 2024 Jan;
160(4).
PMID: 38288757
We investigate the hot carrier and exciton dynamics in two-dimensional (2D) metal halide perovskites using time-resolved spectroscopy. 2D perovskite films were prepared with and without dimethyl sulfoxide treatment to elucidate...
5.
Upadhyay B, Sharma R, Maity D, Narayan T, Pal S
Nanoscale
. 2023 Oct;
15(40):16344-16353.
PMID: 37786388
Substitutional doping is a most promising approach to manipulate the electronic and optical properties of two-dimensional (2D) transition metal dichalcogenides (TMDCs). In addition to inducing magnetism, vanadium (V) doping can...
6.
Verma A, Soni A, Sarkar A, Pal S
Opt Lett
. 2023 Sep;
48(17):4641-4644.
PMID: 37656575
Tin (II) monosulfide (SnS) has attracted considerable attention in emerging photonics and optoelectronics because of high carrier mobility, large absorption coefficient, anisotropic linear and nonlinear optical properties, and long-time stability....
7.
Kundar M, Bhandari S, Chung S, Cho K, Sharma S, Singh R, et al.
ACS Omega
. 2023 Apr;
8(14):12842-12852.
PMID: 37065021
Perovskite solar cells (PSCs) with superior performance have been recognized as a potential candidate in photovoltaic technologies. However, defects in the active perovskite layer induce nonradiative recombination which restricts the...
8.
Soni A, Kushavah D, Lu L, Chang W, Pal S
J Phys Chem Lett
. 2023 Mar;
14(12):2965-2972.
PMID: 36939637
Utilization of the excess energy of photoexcitation that is otherwise lost as thermal effects can improve the efficiency of next-generation light-harvesting devices. Multiple exciton generation (MEG) in semiconducting materials yields...
9.
Nagaraju N, Kushavah D, Kumar S, Ray R, Gambhir D, Ghosh S, et al.
Phys Chem Chem Phys
. 2022 Jan;
24(5):3303-3311.
PMID: 35050277
Literature studies on the effects of alkyne functionality in manipulating the optical properties of donor-π-acceptor-type molecular scaffolds have been scarce compared to those on the alkene functional group. Here, two...
10.
Ray R, Nakka N, Pal S
Nanotechnology
. 2020 Dec;
32(8):085201.
PMID: 33263307
Organo-lead halide perovskite materials have opened up a great opportunity to develop high performance photodetectors because of their superior optoelectronic properties. The main issue with perovskite-only photodetector is severe carrier...