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Mingwei Chen

Researcher at Johns Hopkins University

Publications -  1108
Citations -  63568

Mingwei Chen is an academic researcher from Johns Hopkins University. The author has contributed to research in topics: Medicine & Chemistry. The author has an hindex of 108, co-authored 536 publications receiving 51351 citations. Previous affiliations of Mingwei Chen include National Taiwan University & Chiba University.

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Two-Dimensional Hallmark of Highly Interconnected Three-Dimensional Nanoporous Graphene

TL;DR: In this paper, highly connected and continuous nanoporous graphene (NPG) samples, with electronic and vibrational properties very similar to those of suspended graphene layers, are presented, pinpointing the hallmarks of 2D ideal graphene scaled in these 3D porous architectures by combining the state-of-the-art spectromicroscopy and imaging techniques.
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Three-dimensional porous graphene networks expand graphene-based electronic device applications

TL;DR: In this article, a review of recent 3D porous graphene studies with a perspective for providing new and board applications of graphene in electronic devices is presented, along with physical insights into "2D to 3D graphene", in which the characters of 2D graphene such as massless Dirac fermions are well preserved.
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Van der Waals interfacial reconstruction in monolayer transition-metal dichalcogenides and gold heterojunctions.

TL;DR: The authors report interfacial reconstruction at the Au {001} substrate surface and the top MoS 2 and WS 2 monolayers due to the formation of a metastable interfacial Au 4 S 4 phase which results in a p-type Schottky contact with reduced barrier height.
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Anionic redox reaction in layered NaCr2/3Ti1/3S2 through electron holes formation and dimerization of S-S.

TL;DR: Various charge compensation mechanisms of the sulfur anionic redox process in layered NaCr2/3Ti1/3S2 are investigated and S–S dimerization and the formation of electron holes on sulfur in a model sulfide cathode are reported.