R
Renzhong Tai
Researcher at Chinese Academy of Sciences
Publications - 167
Citations - 3246
Renzhong Tai is an academic researcher from Chinese Academy of Sciences. The author has contributed to research in topics: Beamline & Interference lithography. The author has an hindex of 24, co-authored 140 publications receiving 2531 citations. Previous affiliations of Renzhong Tai include Japan Atomic Energy Research Institute & Japan Atomic Energy Agency.
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Journal ArticleDOI
The cytotoxicity of cadmium-based quantum dots
Nan Chen,Yao He,Yuanyuan Su,Yuanyuan Su,Xiaoming Li,Qing Huang,Haifeng Wang,Xiangzhi Zhang,Renzhong Tai,Chunhai Fan +9 more
TL;DR: Recent progress on mechanistic studies of cytotoxicity of II-IV QDs are summarized to suggest that the cytot toxicity of CdTe QDs not only comes from the release of C d(2+) ions but also intracellular distribution of QD nanoparticles in cells and the associated nanoscale effects.
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Biotransformation of Ceria Nanoparticles in Cucumber Plants
Peng Zhang,Yuhui Ma,Zhiyong Zhang,Xiao He,Jing Zhang,Zhi Guo,Renzhong Tai,Yuliang Zhao,Zhifang Chai +8 more
TL;DR: This is the first report confirming the biotransformation and in-depth exploring the translocation process of CeO(2) NPs in plants.
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Comparative toxicity of nanoparticulate/bulk Yb2O3 and YbCl3 to cucumber (Cucumis sativus)
Peng Zhang,Yuhui Ma,Zhiyong Zhang,Xiao He,Zhi Guo,Renzhong Tai,Yayun Ding,Yuliang Zhao,Zhifang Chai +8 more
TL;DR: It is speculated that the dissolution of Yb(2)O(3) particles induced by the organic acids exuded from roots played an important role in the phytotoxicity.
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Phytotoxicity and biotransformation of La2O3 nanoparticles in a terrestrial plant cucumber (Cucumis sativus)
Yuhui Ma,Xiao He,Peng Zhang,Zhiyong Zhang,Zhi Guo,Renzhong Tai,Zijian Xu,Lijuan Zhang,Yayun Ding,Yuliang Zhao,Zhifang Chai +10 more
TL;DR: It is proposed that the dissolution of NPs at the root surface induced by the organic acids extruded from root cells played an important role in the phytotoxicity of La2O3 NPs.
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Ultrahigh Density of Gas Molecules Confined in Surface Nanobubbles in Ambient Water
Limin Zhou,Xingya Wang,Hyun-Joon Shin,Jian Wang,Renzhong Tai,Xuehua Zhang,Haiping Fang,Wei Xiao,Lei Wang,Chunlei Wang,Xingyu Gao,Jun Hu,Lijuan Zhang +12 more
TL;DR: Synchrotron-based scanning transmission X-ray microscopy evidences of highly condensed oxygen gas molecules trapped as surface nanobubbles reveal that the oxygen density inside was 1-2 orders of magnitude higher than atmospheric air.