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Zhen Li

Researcher at Wuhan University

Publications -  3347
Citations -  95191

Zhen Li is an academic researcher from Wuhan University. The author has contributed to research in topics: Medicine & Computer science. The author has an hindex of 127, co-authored 1712 publications receiving 71351 citations. Previous affiliations of Zhen Li include Tsinghua University & Hong Kong University of Science and Technology.

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Multiple Luminescence Responses towards Mechanical Stimulus and Photo-Induction: The Key Role of the Stuck Packing Mode and Tunable Intermolecular Interactions.

TL;DR: An ultra-simple organic molecule (TPA-B), which exhibits both mechanoluminescence (ML) and photo- induced room-temperature phosphorescence (RTP) in the crystalline state, provides an opportunity to reveal the internal mechanism of ML and the dynamic process of photo-induced RTP in the same molecule.
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Promoting Oxygen Evolution Reaction of Co‐Based Catalysts (Co 3 O 4 , CoS, CoP, and CoN) through Photothermal Effect

TL;DR: It is reported that the electrocatalytic performance of dual functional Co3 O4 can be dramatically improved via its photothermal effect, indicating that it is able to significantly improve the OER activities of electrodes together with other modification strategies.
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Functionalized polyacetylenes with strong luminescence: “turn-on” fluorescent detection of cyanide based on the dissolution of gold nanoparticles and its application in real samples

TL;DR: By dissolution of Au NPs, new polyacetylene-functionalized AU NPs were successfully developed as "turn-on" fluorescent probes for the detection of cyanide sensitively and selectively as mentioned in this paper.
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Semiconductor nanowires for thermoelectrics

TL;DR: A review of the state-of-the-art semiconductor nanowires for thermoelectric applications is presented in this article, where different types of semiconductor materials including those from IV, IV-V, V, V-VI, V -VI, II-VI and III-V groups are reviewed.
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Recent progress of asymmetric solid-state electrolytes for lithium/sodium-metal batteries

TL;DR: Asymmetric solid-state electrolytes (SSEs) as discussed by the authors have been used for the development of high-energy-density solid state alkali-metal batteries with high safety.