JANMONI BORAH
Also known as: JB
Madanapalle Institute of Technology and Science, Budge Budge Institute of Technology, North Eastern Regional Institute of Science and Technology, National Institute of Technology Arunachal Pradesh
About
Janmoni Borah received his Ph.D. (Engg.) in Wireless Communication from NERIST (Deemed-to-be University), India, in 2020. He obtained his M.Tech. in Mobile Communication and Computing from NIT Arunachal Pradesh, India, in 2015, and his B.Tech. in Electronics and Communication Engineering from CIT Kokrajhar, India, in 2013. His research interests include 5G and beyond cellular networks, wireless communication, perovskite solar cells, microstrip antenna design for multi-band applications, microstrip filter design, and green computing. He has published several research papers in international journals and conferences. He also serves as a reviewer for many reputed peer-reviewed journals, including IEEE Access, IET Communications, IET Electronics Letters, Transactions on Emerging Telecommunications Technologies, Telecommunication Systems, Cogent Engineering, Wireless Personal Communications, and Renewable and Sustainable Energy Reviews.
Employment
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Madanapalle Institute of Technology and Science Assistant Professor2022 - Present
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Budge Budge Institute of Technology Assistant Professor2021 - 2021
Education
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North Eastern Regional Institute of Science and Technology Ph.D2015 - 2020
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National Institute of Technology Arunachal Pradesh M.Tech2013 - 2015
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Central Institute of Technology Kokrajhar B.Tech and Diploma2007 - 2013
Projects & Funding
Projects & funding information is unavailable.
Publications (55)
- Cell-Free Massive MIMO for Future Generation Wireless Networks Save
- Device Engineering of a New Lead Free All Inorganic CsSnI₃/CsSnCl₃-Based Graded Perovskite Absorber Structure for High Performance Solar Cell Save
- Design and optimization of BaSnO3/SW-CNT hybrid electron extraction architecture enabling extended spectral response in nontoxic Cs2AgBiBr6 double perovskite photovoltaic cells: Insights from SCAPS-1D Save
- Optimized Cs3Bi2I9/Ma3Sb2I9 dual perovskite absorbers for broad-spectrum solar coverage via SCAPS-1D device performance analysis Save
- Ultrabroadband Quantum-Dot Photovoltaics Enabled by a Hybrid Quad-Graded CsSnxGe1-xI3/CaZrS3-Based Perovskite Absorber Design Save
- Unraveling broadened spectral response in 2D quantum dot solar cells via Sb2Se3/CaZrS3 dual chalcogenide absorbers: Insights from SCAPS-1D Save
- Investigation of a novel tri -graded CsGeI3-CsSnxGe1-xI3-Cs2AgBiI6 perovskite absorbers architecture integrated with single walled carbon nanotube (SW-CNT) for enhanced spectral harvesting in 2D quantum dot solar cells Save
- Design and optimization of Cs2AgInBr6/CsSnI3-based dual-absorber inorganic perovskite solar cell for enhanced broadband absorption Save
- Device Engineering of a Novel Lead-Free Solar Cell Architecture Utilizing Inorganic CsSnCl3 and CsSnI3 Perovskite-Based Dual Absorbers for Sustainable Powering of Wireless Networks Save
- Investigation of hybrid electron extraction architecture via integration of mono-shelled carbon nanotubes (MS-CNT) with perovskite oxide BaSnO3 for beyond 38% efficiency in BaZrSe3 photovoltaic cells Save