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Aniruddha Mondal
Aniruddha Mondal
在 phy.nitdgp.ac.in 的电子邮件经过验证 - 首页
标题
引用次数
引用次数
年份
Ultraviolet detection using TiO2 nanowire array with Ag Schottky contact
P Chinnamuthu, JC Dhar, A Mondal, A Bhattacharyya, NK Singh
Journal of Physics D: Applied Physics 45 (13), 135102, 2012
912012
Bioinspired metal/metal oxide nanoparticles: A road map to potential applications
PB Chouke, T Shrirame, AK Potbhare, A Mondal, AR Chaudhary, ...
Materials Today Advances 16, 100314, 2022
752022
Enlarged broad band photodetection using Indium doped TiO2 alloy thin film
MB Sarkar, A Mondal, B Choudhuri, BK Mahajan, S Chakrabartty, ...
Journal of alloys and compounds 615, 440-445, 2014
492014
Band gap enhancement of glancing angle deposited TiO2 nanowire array
P Chinnamuthu, A Mondal, NK Singh, JC Dhar, KK Chattopadhyay, ...
Journal of Applied Physics 112 (5), 2012
482012
Enlarged Photodetection Using Nanowire Arrays
A Mondal, NK Singh, P Chinnamuthu, JC Dhar, A Bhattacharyya, ...
IEEE Photonics Technology Letters 24 (22), 2020-2023, 2012
412012
Investigation on improved performance of Erbium doped TiO2 nanowire based UV detector
R Lahiri, A Ghosh, B Choudhuri, A Mondal
Materials Research Bulletin 103, 259-267, 2018
382018
Fabrication of novel transparent Co3O4-TiO2 nanowires pn heterojunction diodes for multiband photodetection applications
B Choudhuri, A Mondal, SMMD Dwivedi, M Henini
Journal of Alloys and Compounds 712, 7-14, 2017
372017
Nanoparticles Arrays Ultraviolet-A Detector With Au Schottky Contact
S Chakrabartty, A Mondal, MB Sarkar, B Choudhuri, AK Saha, ...
IEEE Photonics Technology Letters 26 (11), 1065-1068, 2014
312014
Superior Memory of Er-Doped TiO2Nanowire MOS Capacitor
R Lahiri, A Mondal
IEEE Electron Device Letters 39 (12), 1856-1859, 2018
292018
Enhanced photoemission from glancing angle deposited SiOx-TiO2 axial heterostructure nanowire arrays
JC Dhar, A Mondal, NK Singh, KK Chattopadhyay
Journal of Applied Physics 113 (17), 2013
292013
Enhanced photocurrent from generated photothermal heat in indium nanoparticles embedded TiO2 film
B Choudhuri, A Mondal, JC Dhar, NK Singh, T Goswami, ...
Applied Physics Letters 102 (23), 2013
282013
A novel Ag nanoparticles/TiO2 nanowires-based photodetector and glucose concentration detection
C Ghosh, SMM Dhar Dwivedi, A Ghosh, A Dalal, A Mondal
Applied Physics A 125, 1-9, 2019
262019
Visible light detection using glancing angle deposited TiO2 nanowire arrays
P Chinnamuthu, A Mondal, JC Dhar, NK Singh
Japanese Journal of Applied Physics 54 (6S1), 06FJ01, 2015
262015
Structural and optical properties of glancing angle deposited In2O3 columnar arrays and Si/In2O3 photodetector
A Mondal, B Shougaijam, T Goswami, JC Dhar, NK Singh, S Choudhury, ...
Applied Physics A 115, 353-358, 2014
262014
Removal of oxygen related defects from chemically synthesized In2O3 thin film doped with Er by spin-on technique
A Ghosh, A Mondal, A Das, S Chattopadhyay, KK Chattopadhyay
Journal of Alloys and Compounds 695, 1260-1265, 2017
252017
Investigation of optical and electrical properties of erbium-doped TiO2 thin films for photodetector applications
S Mondal, A Ghosh, MR Piton, JP Gomes, JF Felix, YG Gobato, ...
Journal of Materials Science: Materials in Electronics 29, 19588-19600, 2018
242018
The Ag Nanoparticles/TiO2 Thin Film Device for Enhanced Photoconduction and Role of Traps
A Mondal, A Ganguly, A Das, B Choudhuri, RK Yadav
Plasmonics 10, 667-673, 2015
242015
Enhanced visible light absorption by TiO2 film patterned with Ag nanoparticles arrays
A Ganguly, A Mondal, JC Dhar, NK Singh, S Choudhury
Physica E: Low-dimensional Systems and Nanostructures 54, 326-330, 2013
242013
Detailed studies on the origin of nitrogen-related electron traps in dilute GaAsN layers grown by liquid phase epitaxy
S Dhar, N Halder, A Mondal, B Bansal, BM Arora
Semiconductor science and technology 20 (12), 1168, 2005
242005
GLAD synthesised erbium doped In2O3 nano-columns for UV detection
A Ghosh, P Murkute, R Lahiri, S Chakrabarti, KK Chattopadhyay, ...
Journal of Materials Science: Materials in Electronics 30, 12739-12752, 2019
232019
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