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Yongxin Tao

Showing results (1-10 of 60) with videos related to

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Analytical Chemistry|February 4, 2014
Temperature-sensitive electrochemical recognition of tryptophan enantiomers based on β-cyclodextrin self-assembled on poly(L-glutamic acid)Yongxin Tao, Jiangying Dai, Yong Kong, et al.
The Analyst|April 3, 2020
An ionic-based carbon dot for enantioselective discrimination of nonaromatic amino alcoholsDatong Wu, Fei Pan, Li Gao, et al.
Analytical Chemistry|July 13, 2021
Strategies to Achieve a Ferrocene-Based Polymer with Reversible Redox Activity for Chiral Electroanalysis of Nonelectroactive Amino AcidsDatong Wu, Cong Ma, Fei Pan, et al.
Analytical Chemistry|September 22, 2020
Enantioselective Limiting Transport into a Fixed Cavity via Supramolecular Interaction for the Chiral Electroanalysis of Amino Acids Regardless of Electroactive UnitsDatong Wu, Fei Pan, Li Gao, et al.
The Analyst|February 5, 2026
A synergistic bimetallic MOF/MWCNT nanocomposite for sensitive electrochemical detection of baicalinYijie Zhang, Yongxin Tao, Shan Li, et al.
ACS Applied Materials & Interfaces|August 4, 2016
Construction of Electrochemical Chiral Interfaces with Integrated Polysaccharides via AmidationLiping Bao, Xiaohui Chen, Baozhu Yang, et al.
Analytical Chemistry|March 30, 2018
Chiral Sensing Platform Based on the Self-Assemblies of Diphenylalanine and Oxalic AcidLili Guo, Baozhu Yang, Datong Wu, et al.
Analytical Chemistry|August 14, 2020
Enantioselective Recognition of Chiral Tryptophan with Achiral Glycine through the Strategy of Chirality TransferShanshan Wu, Qiumin Ye, Datong Wu, et al.
Langmuir : the ACS Journal of Surfaces and Colloids|November 27, 2019
Chiral Enantioselective Assemblies Induced from Achiral Porphyrin by l- and d-LysineShanshan Wu, Zheng-Zhi Yin, Datong Wu, et al.
Analytical Chemistry|November 11, 2017
Smart Chiral Sensing Platform with Alterable EnantioselectivityYin Yu, Yongxin Tao, Baozhu Yang, et al.
Pageof 6

Showing results (1-10 of 60) with videos related to

Sort By:
Pageof 6
Analytical Chemistry|February 4, 2014
Temperature-sensitive electrochemical recognition of tryptophan enantiomers based on β-cyclodextrin self-assembled on poly(L-glutamic acid)Yongxin Tao, Jiangying Dai, Yong Kong, et al.
The Analyst|April 3, 2020
An ionic-based carbon dot for enantioselective discrimination of nonaromatic amino alcoholsDatong Wu, Fei Pan, Li Gao, et al.
Analytical Chemistry|July 13, 2021
Strategies to Achieve a Ferrocene-Based Polymer with Reversible Redox Activity for Chiral Electroanalysis of Nonelectroactive Amino AcidsDatong Wu, Cong Ma, Fei Pan, et al.
Analytical Chemistry|September 22, 2020
Enantioselective Limiting Transport into a Fixed Cavity via Supramolecular Interaction for the Chiral Electroanalysis of Amino Acids Regardless of Electroactive UnitsDatong Wu, Fei Pan, Li Gao, et al.
The Analyst|February 5, 2026
A synergistic bimetallic MOF/MWCNT nanocomposite for sensitive electrochemical detection of baicalinYijie Zhang, Yongxin Tao, Shan Li, et al.
ACS Applied Materials & Interfaces|August 4, 2016
Construction of Electrochemical Chiral Interfaces with Integrated Polysaccharides via AmidationLiping Bao, Xiaohui Chen, Baozhu Yang, et al.
Analytical Chemistry|March 30, 2018
Chiral Sensing Platform Based on the Self-Assemblies of Diphenylalanine and Oxalic AcidLili Guo, Baozhu Yang, Datong Wu, et al.
Analytical Chemistry|August 14, 2020
Enantioselective Recognition of Chiral Tryptophan with Achiral Glycine through the Strategy of Chirality TransferShanshan Wu, Qiumin Ye, Datong Wu, et al.
Langmuir : the ACS Journal of Surfaces and Colloids|November 27, 2019
Chiral Enantioselective Assemblies Induced from Achiral Porphyrin by l- and d-LysineShanshan Wu, Zheng-Zhi Yin, Datong Wu, et al.
Analytical Chemistry|November 11, 2017
Smart Chiral Sensing Platform with Alterable EnantioselectivityYin Yu, Yongxin Tao, Baozhu Yang, et al.
Pageof 6