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Aadil Waseem

Researcher at Chonnam National University

Publications -  36
Citations -  544

Aadil Waseem is an academic researcher from Chonnam National University. The author has contributed to research in topics: Nanowire & Water splitting. The author has an hindex of 9, co-authored 28 publications receiving 245 citations.

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Cu2O as an emerging photocathode for solar water splitting - A status review

TL;DR: Recently, cuprous oxide (Cu2O) based photocathodes have gained research attention for hydrogen (H2) production through photoelectrochemical (PEC) water splitting reactions due to marginally lower synthesis cost and low energy intensity fabrication processes as mentioned in this paper.
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Single-step fabrication of 3D hierarchical ZnO/ZnS heterojunction branched nanowires by MOCVD for enhanced photoelectrochemical water splitting

TL;DR: In this paper, a scalable single-step growth of three-dimensional hierarchical ZnO/ZnS heterojunction branched nanowires (3D ZnOs/Zns h-b-NWs) on a Si substrate using MOCVD was reported.
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Stable and High Piezoelectric Output of GaN Nanowire-Based Lead-Free Piezoelectric Nanogenerator by Suppression of Internal Screening

TL;DR: The underlying reason for the high piezoelectric output was attributed to the reduced free carriers inside nanowires due to surface Fermi-level pinning and insulating metal-dielectric-semiconductor interface, respectively.
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Transferred monolayer MoS 2 onto GaN for heterostructure photoanode: Toward stable and efficient photoelectrochemical water splitting

TL;DR: A novel heterostructure MoS2/GaN to be used as a photoanode for PEC-WS with significantly enhanced applied-bias-photon-to-current conversion efficiency is reported, giving a new perspective on the importance ofMoS2 as a cocatalyst coated onto GaN to synthesize photoelectrodes for efficient solar energy conversion devices.
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Effect of crystal orientation of GaN/V2O5 core-shell nanowires on piezoelectric nanogenerators

TL;DR: In this article, GaN/V2O5 core-shell nanowire (NW) generators of controlled crystallographic orientations were fabricated, and the device performance was characterized.