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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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Advances of supramolecular interaction systems for improved oil recovery (IOR).

TL;DR: In this article , the authors review the fundamentals of several supramolecular interactions, including hydrophobic association, hydrogen bond, electrostatic interaction, host-guest recognition, metal-ligand coordination and dynamic covalent bond from intrinsic principles and extrinsic functions.
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Prying into the limit of CIE value for TPE-based blue AIEgens in organic light-emitting diodes

TL;DR: By incorporating tetraphenylethene (TPE) into the platform of polyphenylbenzene through different linkage modes and adjustment of conjugation, four highly twisted luminogens were synthesized, of which showed good thermal stability verified by thermogravimetric and differential scanning calorimetry analysis as mentioned in this paper.
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Synergistic removal of tylosin/sulfamethoxazole and copper by nano-hydroxyapatite modified biochar

TL;DR: Investigation of the removal performance of biochar modified with nano-hydroxyapatite on tylosin /sulfamethoxazole and Cu(II) simultaneously found that specific surface area and pore size were two of the main factors influencing the adsorption capacities of nHAP@biochars.
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Enhanced performance and stability of p–i–n perovskite solar cells by utilizing an AIE-active cathode interlayer

TL;DR: In this article, a new alcohol-soluble AIE-active quaternary ammonium salt PTN-Br was prepared and developed as the cathode interfacial layer (CIL) between the Ag electrode and [6,6]-phenyl-C61-butyric acid methyl ester (PCBM) in p-i-n perovskite solar cells.
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Solution–Liquid–Solid Synthesis of Semiconductor Nanowires Using Clusters as Single‐Source Precursors

TL;DR: The use of cluster precursor as compared to molecular precursors leads to a high local CdSe concentration, which favors the growth of nanowires with thin diameters and a narrow diameter distribution.