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Sabyasachi Ganguli

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Articles 12
Citations 55
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Recent Articles
1.
Boucly A, Back T, Asel T, Noseges B, Reed A, Ganguli S, et al.
Sci Rep . 2025 Mar; 15(1):8016. PMID: 40055351
We present a fundamental study of the band alignment at the interface of HfZrO (HZO) with Ge-doped GaO. Ge is an alternative n-type dopant for the wide band gap GaO...
2.
Zhao R, Kim S, Xu Y, Zhao J, Wang T, Midya R, et al.
Chem Rev . 2024 Dec; 125(2):745-785. PMID: 39729346
Conventional artificial intelligence (AI) systems are facing bottlenecks due to the fundamental mismatches between AI models, which rely on parallel, in-memory, and dynamic computation, and traditional transistors, which have been...
3.
Sihn S, Chambers W, Abedin M, Beckmann K, Cady N, Ganguli S, et al.
Small . 2024 Mar; :e2310542. PMID: 38516964
Memristors, non-volatile switching memory platform, has recently attracted significant interest, offering unique potential to enable the realization of human brain-like neuromorphic computing efficiency. Memristors also demonstrate excellent temperature tolerance, long-term...
4.
Islam M, Lee J, Ganguli S, Roy A
Sci Rep . 2023 Oct; 13(1):16656. PMID: 37789156
The resistive switching behavior in TaO based memristors is largely controlled by the formation and annihilation of conductive filaments (CFs) that are generated by the migration of oxygen vacancies (OVs)....
5.
Li Y, Song W, Wang Z, Jiang H, Yan P, Lin P, et al.
Adv Mater . 2022 Nov; 35(37):e2206648. PMID: 36378155
The increasing interests in analog computing nowadays call for multipurpose analog computing platforms with reconfigurability. The advancement of analog computing, enabled by novel electronic elements like memristors, has shown its...
6.
Clarke H, Deremo L, Anderson J, Ganguli S, Shamberger P
Nanotechnology . 2019 Nov; 31(7):075706. PMID: 31751315
The development of neuromorphic computing architectures based on two terminal filamentary resistance switching devices is limited in part by the high degree of variability in resistance states and switching voltages....
7.
Lee J, Ganguli S, Roy A, Badescu S
J Chem Phys . 2019 May; 150(17):174706. PMID: 31067881
A new parameter set to model monoclinic gallium oxide, β-GaO, with the density functional tight binding (DFTB) method is developed. Using this new parameter set, DFTB calculations of bulk electronic...
8.
Xu M, Du F, Ganguli S, Roy A, Dai L
Nat Commun . 2016 Nov; 7:13450. PMID: 27849052
Conventional adhesives show a decrease in the adhesion force with increasing temperature due to thermally induced viscoelastic thinning and/or structural decomposition. Here, we report the counter-intuitive behaviour of carbon nanotube...
9.
Sudeep P, Narayanan T, Ganesan A, Shaijumon M, Yang H, Ozden S, et al.
ACS Nano . 2013 Jul; 7(8):7034-40. PMID: 23845011
The creation of three-dimensionally engineered nanoporous architectures via covalently interconnected nanoscale building blocks remains one of the fundamental challenges in nanotechnology. Here we report the synthesis of ordered, stacked macroscopic...
10.
Hashim D, Narayanan N, Romo-Herrera J, Cullen D, Hahm M, Lezzi P, et al.
Sci Rep . 2012 Apr; 2:363. PMID: 22509463
The establishment of covalent junctions between carbon nanotubes (CNTs) and the modification of their straight tubular morphology are two strategies needed to successfully synthesize nanotube-based three-dimensional (3D) frameworks exhibiting superior...