Wahida Rahman
Wahida Rahman
Ph.D scholar
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Improved breakdown strength and electrical energy storage performance of γ-poly (vinylidene fluoride)/unmodified montmorillonite clay nano-dielectrics
SK Ghosh, W Rahman, TR Middya, S Sen, D Mandal
Nanotechnology 27 (21), 215401, 2016
Self-powered piezoelectric nanogenerator based on wurtzite ZnO nanoparticles for energy harvesting application
W Rahman, S Garain, A Sultana, TR Middya, D Mandal
Materials Today: Proceedings 5 (3), 9826-9830, 2018
Highly durable piezo-electric energy harvester by a super toughened and flexible nanocomposite: effect of laponite nano-clay in poly (vinylidene fluoride)
W Rahman, SK Ghosh, TR Middya, D Mandal
Materials Research Express 4 (9), 095305, 2017
Self‐Polarized ZrO2/Poly(vinylidene fluoride‐co‐hexafluoropropylene) Nanocomposite‐Based Piezoelectric Nanogenerator and Single‐Electrode Triboelectric …
MM Saikh, NA Hoque, P Biswas, W Rahman, N Das, S Das, P Thakur
physica status solidi (a) 218 (9), 2000695, 2021
Detection of high sensitive acoustic region for sensible applications of electrospinning based PVDF-TrFE nanofiber sensor
F Kibria, W Rahman, SN Patra
Nano Express 1 (2), 020027, 2020
Electrospinning-based high-sensitive PVDF-TrFE nanofibre sensor with sensitivity dependence on pore diameter
F Kibria, W Rahman, SN Patra
Curr. Sci 119, 841-849, 2020
Enhanced mechanical energy harvesting ability of electrospun poly (vinylidene fluoride)/hectorite clay nanocomposites
W Rahman, SK Ghosh, TR Middya, D Mandal
AIP Conference Proceedings 1942 (1), 2018
A comprehensive review on poly (vinylidene fluoride) from a theoretical and multimodal applications perspective
A Sk, P Adhikary, W Rahman, PK Haldar
Polymer Engineering & Science 63 (10), 3209-3222, 2023
Polyvinylidene Fluoride Clay nano composites Piezoelectric materials characterizations and applications to energy storage and mechanical thermal energy harvesting
W Rahman
Kolkata, 0
Electrospinning based high sensitive PVDF-TrFE nanofiber sensor with sensitivity dependence on nanofiber’s pore diameter
F Kibria, W Rahman, SN Patra
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