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Dr. Jumi Deka
Dr. Jumi Deka
PhD
Email verificata su vanderbilt.edu
Titolo
Citata da
Citata da
Anno
Robust and self-healable bulk-superhydrophobic polymeric coating
A Das, J Deka, K Raidongia, U Manna
Chemistry of Materials 29 (20), 8720-8728, 2017
712017
Synthesis of fish scale and lotus leaf mimicking, stretchable and durable multilayers
A Das, S Sengupta, J Deka, AM Rather, K Raidongia, U Manna
Journal of Materials Chemistry A 6 (33), 15993-16002, 2018
382018
Solvent-driven responsive bilayer membranes of clay and graphene oxide
RK Gogoi, K Saha, J Deka, D Brahma, K Raidongia
Journal of materials chemistry A 5 (7), 3523-3533, 2017
352017
Strategic formulation of graphene oxide sheets for flexible monoliths and robust polymeric coatings embedded with durable bioinspired wettability
A Das, J Deka, AM Rather, BK Bhunia, PP Saikia, BB Mandal, ...
ACS applied materials & interfaces 9 (48), 42354-42365, 2017
262017
Microporous Organic Polymer‐Derived Nitrogen‐Doped Porous Carbon Spheres for Efficient Capacitive Energy Storage
N Deka, J Barman, J Deka, K Raidongia, GK Dutta
ChemElectroChem 6 (13), 3327-3336, 2019
212019
Nitrogen‐Doped Porous Carbon Derived from Carbazole‐Substituted Tetraphenylethylene‐Based Hypercrosslinked Polymer for High‐Performance Supercapacitor
N Deka, J Deka, GK Dutta
ChemistrySelect 3 (29), 8483-8490, 2018
202018
Applications of lamellar membranes reconstructed from clay mineral-based nanosheets: a review
K Saha, J Deka, RK Gogoi, KKR Datta, K Raidongia
ACS Applied Nano Materials 5 (11), 15972-15999, 2022
192022
Energy from the nanofluidic transport of water through nanochannels between packed silica spheres
K Saha, J Deka, K Raidongia
ACS Applied Nano Materials 2 (9), 5850-5856, 2019
192019
Nanofluidic transport through humic acid modified graphene oxide nanochannels
TJ Konch, RK Gogoi, A Gogoi, K Saha, J Deka, KA Reddy, K Raidongia
Materials Chemistry Frontiers 2 (9), 1647-1654, 2018
192018
Extraction of Evaporation-Driven Electrokinetic Streaming Potential from V2O5 Nanochannels through Secondary Sources
K Saha, J Deka, K Raidongia
ACS Applied Energy Materials 4 (8), 8410-8420, 2021
162021
Chemical reactions under the nanofluidic confinement of reconstructed lamellar membranes
K Saha, J Deka, S Hens, S Saikia, K Raidongia
Journal of materials chemistry A 6 (45), 22931-22939, 2018
162018
Enhanced catalytic activity and near room temperature gas sensing properties of SnO 2 nanoclusters@ mesoporous Sn (iv) organophosphonate composite
S Borah, B Bhattacharyya, J Deka, A Borah, A Devi, D Deka, S Mishra, ...
Dalton Transactions 46 (26), 8664-8672, 2017
132017
Fabrication of Pressure-Responsive Energy Device from Nanofluidic Vanadium Pentoxide and Polymeric Hydrogel
KR Jumi Deka, Kundan Saha, Raktim Gogoi, Gitish K Dutta
ACS Applied Electronic Materials 3 (1), 277-284, 2020
92020
Fabrication of polyaniline–graphene oxide hybrid nanocomposites by green interfacial polymerization for all-solid-state supercapacitors and enzymatic glucose sensors
G Konwar, J Deka, K Raidongia, D Mahanta
New Journal of Chemistry 45 (38), 17909-17917, 2021
72021
Clay-Based Nanofluidic Membrane Derived from Vermiculite Nanoflakes for Pressure-Responsive Power Generation
J Deka, K Saha, A Yadav, K Raidongia
ACS Applied Nano Materials 4 (5), 4872-4880, 2021
62021
Electrical power generation from the contrasting interfacial activities of boron-and nitrogen-doped reduced graphene oxide membranes
J Deka, K Saha, S Kumar, HK Srivastava, K Raidongia
ACS Applied Nano Materials 2 (12), 7997-8004, 2019
62019
Reconstruction of Soil Components into Multifunctional Freestanding Membranes
J Deka, K Saha, TJ Konch, RK Gogoi, S Saikia, PP Saikia, GK Dutta, ...
ACS omega 4 (1), 1292-1299, 2019
52019
Carbonized cotton fibers for ultrahigh power-density electrokinetic energy harvesting
K Saha, J Deka, A Kumar, M Mondal, BR Bora, C Bakli, AK Sood, ...
ACS Applied Energy Materials 7 (1), 176-185, 2023
12023
Application of reconstructed layered materials for environmental energy harvesting
J Deka
Guwahati, 2021
2021
Il sistema al momento non può eseguire l'operazione. Riprova più tardi.
Articoli 1–19