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Fuwei Zhuge

Researcher at Huazhong University of Science and Technology

Publications -  80
Citations -  3389

Fuwei Zhuge is an academic researcher from Huazhong University of Science and Technology. The author has contributed to research in topics: Nanowire & Memristor. The author has an hindex of 28, co-authored 69 publications receiving 2446 citations. Previous affiliations of Fuwei Zhuge include Chinese Academy of Sciences & Osaka University.

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Doping engineering and functionalization of two-dimensional metal chalcogenides

TL;DR: This review highlights the recent progress in the doping engineering of 2D MXs, covering that enabled by substitution, exterior charge transfer, intercalation and the electrostatic doping mechanism.
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Flexible and high energy density asymmetrical supercapacitors based on core/shell conducting polymer nanowires/manganese dioxide nanoflakes

TL;DR: In this article, a hierarchical porous polypyrrole nanowires/manganese oxides nanoflakes (MnO 2 NFs@PPy NWs) core/shell nanostructures were successfully constructed through a simple, convenient and environmentally friendly method by using PPy nanowsires as the core buffer and K-Birnessite type MnO 2 as the shell.
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Van der Waals Coupled Organic Molecules with Monolayer MoS2 for Fast Response Photodetectors with Gate-Tunable Responsivity.

TL;DR: The strategy presented here based on surface-assembled organic molecules may pave the way for realizing high-performance TMD-based photodetection with ultrafast speed and high sensitivity.
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An Enhanced UV-Vis-NIR an d Flexible Photodetector Based on Electrospun ZnO Nanowire Array/PbS Quantum Dots Film Heterostructure.

TL;DR: This strategy is further verified on other kinds of 1D nanowires and 0D QDs, and similar enhancement on the performance of corresponding photodetecetors can be acquired, evidencing the universality of this strategy.
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Solution-derived 40 µm vertically aligned ZnO nanowire arrays as photoelectrodes in dye-sensitized solar cells

TL;DR: The performance of dye-sensitized solar cells (DSSCs) increased with increasing length of ZnO nanowire arrays, which was mainly ascribed to the aggrandized photocurrent and reduced recombination loss according to electrochemical impedance spectroscopy (EIS).