Z
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.
Papers
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Journal ArticleDOI
Protein-building molecular recognition sites by layer-by-layer molecular imprinting on colloidal particles
Guijian Guan,Renyong Liu,Renyong Liu,Minghong Wu,Zhen Li,Bianhua Liu,Zhenyang Wang,Daming Gao,Zhongping Zhang +8 more
TL;DR: A layer-by-layer (LbL) molecular imprinting strategy for constructing molecular recognition sites at the surface of colloidal silica particles by glutaraldehyde-mediated covalent assembly of gelatin protein in aqueous media will open a new window of interest in the exploration of novel molecular recognition systems for application in chemosensors, selective separation, and drug screening and release.
Journal ArticleDOI
Halogen-substituted triphenylamine derivatives with intense mechanoluminescence properties
Jin Tu,Yunhao Fan,Jiaqiang Wang,Xiaoyu Li,Fan Liu,Mengmeng Han,Can Wang,Qianqian Li,Zhen Li,Zhen Li +9 more
TL;DR: In this article, three triphenylamine (TPA) derivatives, constructed by the introduction of halogen atoms in TPA, show strong mechanoluminescence emissions, partially due to their various electronic configurations by virtue of the electron withdrawing ability.
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Structural and luminescent properties of ZnO nanorods prepared from aqueous solution
Fei Li,Zhen Li,Fu Jiang Jin +2 more
TL;DR: A simple method to fabricate the one-dimensional nanostructure of zinc oxide nanorods from aqueous solution was presented in this paper, where the results indicated that the ZnO nanorod were single crystalline and grown in the direction of [001] with the hexagonal wurtzite structure.
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Investigation on the coupled heat and mass transfer process between extremely high humidity air and liquid desiccant in the counter-flow adiabatic packed tower
TL;DR: In this article, the authors presented theoretical and experimental studies on the coupled heat and mass transfer process in a counter-flow adiabatic structured packed tower with the inlet air humidity ratio ranging from 20g/kg air to 160g/ kg air.
Posted ContentDOI
A collaborative online AI engine for CT-based COVID-19 diagnosis
Yongchao Xu,Liya Ma,Yang Fan,Yanyan Chen,Ke Ma,Jiehua Yang,Xian Yang,Yaobing Chen,Chang Shu,Ziwei Fan,Jiefeng Gan,Xinyu Zou,Renhao Huang,Changzheng Zhang,Xiaowu Liu,Dandan Tu,Chuou Xu,Wenqing Zhang,Dehua Yang,Ming-Wei Wang,Xi Wang,Xiao-Liang Xie,Hongxiang Leng,Nagaraj Holalkere,Neil J. Halin,Ihab R. Kamel,Jia Wu,Xuehua Peng,Xiang Wang,Jianbo Shao,Pattanasak Mongkolwat,Jianjun Zhang,Daniel L. Rubin,Guoping Wang,Chuangsheng Zheng,Zhen Li,Xiang Bai,Tian Xia +37 more
TL;DR: A federated learning-based Unified CT-COVID AI Diagnostic Initiative (UCADI), a decentralized architecture where the AI model is distributed to and executed at each host institution with the data sources or client ends for training and inferencing without sharing individual patient data is proposed.