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Qingzhen Tian

Showing results (1-10 of 7) with videos related to

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Analytical Chemistry|January 21, 2025
Kinetics Difference-driven Organophosphorus Hydrolase-like Nanozyme-Coded Pattern for Identifying <i>p</i>-Nitrophenyl PesticidesShu Li, Xinyu Chen, Qingzhen Tian, et al.
Advanced Healthcare Materials|August 14, 2024
Nanozyme-Enabled Biomedical Diagnosis: Advances, Trends, and ChallengesQingzhen Tian, Shu Li, Zheng Tang, et al.
Food Chemistry|March 30, 2025
Catalytic preference-enabled exclusive bimodal detection of methyl-paraoxon in complex food matrices using double site-synergized organophosphorus hydrolase-mimetic fluorescent nanozymesQingzhen Tian, Jinjin Liu, Yuxuan Long, et al.
Analytical and Bioanalytical Chemistry|February 3, 2024
Introducing molecular imprinting onto nanozymes: toward selective catalytic analysisZhijian Bu, Lian Huang, Shu Li, et al.
TAG. Theoretical and Applied Genetics. Theoretische Und Angewandte Genetik|February 22, 2005
Development of wheat near-isogenic lines for powdery mildew resistanceRonghua Zhou, Zhendong Zhu, Xiuying Kong, et al.
Analytical Chemistry|May 20, 2026
Toward Bioreceptor-Free Nanozyme Sensing: Matched Interaction and Ligand-Modulated Phosphatase-Mimetic Activity Enable Anti-Interference and Sensitive Detection of Quinolones in Dairy ProductsQingzhen Tian, Linjie Wang, Kai Kang, et al.
Journal of Integrative Plant Biology|February 17, 2025
Accurate genomic prediction for grain yield and grain moisture content of maize hybrids using multi-environment dataJingxin Wang, Liwei Liu, Kunhui He, et al.
Pageof 1

Showing results (1-10 of 7) with videos related to

Sort By:
Pageof 1
Analytical Chemistry|January 21, 2025
Kinetics Difference-driven Organophosphorus Hydrolase-like Nanozyme-Coded Pattern for Identifying <i>p</i>-Nitrophenyl PesticidesShu Li, Xinyu Chen, Qingzhen Tian, et al.
Advanced Healthcare Materials|August 14, 2024
Nanozyme-Enabled Biomedical Diagnosis: Advances, Trends, and ChallengesQingzhen Tian, Shu Li, Zheng Tang, et al.
Food Chemistry|March 30, 2025
Catalytic preference-enabled exclusive bimodal detection of methyl-paraoxon in complex food matrices using double site-synergized organophosphorus hydrolase-mimetic fluorescent nanozymesQingzhen Tian, Jinjin Liu, Yuxuan Long, et al.
Analytical and Bioanalytical Chemistry|February 3, 2024
Introducing molecular imprinting onto nanozymes: toward selective catalytic analysisZhijian Bu, Lian Huang, Shu Li, et al.
TAG. Theoretical and Applied Genetics. Theoretische Und Angewandte Genetik|February 22, 2005
Development of wheat near-isogenic lines for powdery mildew resistanceRonghua Zhou, Zhendong Zhu, Xiuying Kong, et al.
Analytical Chemistry|May 20, 2026
Toward Bioreceptor-Free Nanozyme Sensing: Matched Interaction and Ligand-Modulated Phosphatase-Mimetic Activity Enable Anti-Interference and Sensitive Detection of Quinolones in Dairy ProductsQingzhen Tian, Linjie Wang, Kai Kang, et al.
Journal of Integrative Plant Biology|February 17, 2025
Accurate genomic prediction for grain yield and grain moisture content of maize hybrids using multi-environment dataJingxin Wang, Liwei Liu, Kunhui He, et al.
Pageof 1