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Weidong Wang

Researcher at Xidian University

Publications -  97
Citations -  1368

Weidong Wang is an academic researcher from Xidian University. The author has contributed to research in topics: Graphene & Pressure sensor. The author has an hindex of 16, co-authored 87 publications receiving 862 citations. Previous affiliations of Weidong Wang include City University of Hong Kong & Northwestern University.

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Scavenging energy from ultra-low frequency mechanical excitations through a bi-directional hybrid energy harvester

TL;DR: In this article, a bi-directional hybrid energy harvester (HEH) is presented to scavenge energy from ultra-low frequency mechanical excitations, which consists of two piezoelectric cantilever beams, a suspended magnet, and a set of coil.
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NaCl-assisted one-step growth of MoS 2 -WS 2 in-plane heterostructures.

TL;DR: It was found that the addition of NaCl played a key role in lowering the growth temperatures, in which the Na-containing precursors could be formed and condensed on the substrates to reduce the energy of the reaction.
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Design and experimental verification of a bi-directional nonlinear piezoelectric energy harvester

TL;DR: In this article, a bi-directional nonlinear PEH that is sensitive to two orthogonal directions of deflection has been proposed, which can not only harvest vibration energy from various directions but also provide an enhanced output voltage as compared to its linear counterpart.
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Stereolithographic 3D Printing-Based Hierarchically Cellular Lattices for High-Performance Quasi-Solid Supercapacitor.

TL;DR: The stereolithographic technique to fabricate the metallic composite lattices with octet-truss arrangement by using electroless plating and engineering the 3D hierarchically porous graphene onto the scaffolds to build the hierarchically cellular lattices in quasi-solid supercapacitor application is proposed.
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Adsorption of CO molecules on doped graphene: A first-principles study

TL;DR: In this article, the adsorption energy of CO molecules on various graphene, including pristine graphene, Nitrogen-doped graphene (N-Doped graphene) and Aluminum-dosed graphene (Al-dopted graphene), were studied by using first-principles calculations.