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    姓      名:

    李桢臻

    职      称🏃‍♀️:

    副教授

    出生年月:

    1991年10月

    电子邮箱:

    zhenzhen_li@shu.edu.cn

    个人简况

    工作经历🐐:

    2024-目前   天富平台 副教授

    2019-2023   耶路撒冷希伯来大学 博士后

     

    教育背景👩🏽:

    2014-2019  华东师范大学  分析化学 理学博士

    2010-2014  南京师范大学  化学 理学学士

    研究方向

    光电化学纳米材料的合成及传感研究🔊;

    耗散动态网络设计与构建👩‍🏭;

    新型生物功能材料的设计与制备🧑‍🦰。

    代表性成果

    [1] Z. Li+, J.     Wang+, I. Willner*, Autoinhibited transient, gated, and     cascaded dynamic transcription of RNAs. Sci. Adv. 2022, 8,     eabq5947.

    [2]     Z. Li+, J. Wang+,     I. Willner*, Alternate Strategies to Induce Dynamically Modulated Transient     Transcription Machineries. ACS Nano 2023, 17, 18, 18266−18279.

    [3]     Z. Li, J. Wang, M. P. O'Hagan, F.     Huang,* F. Xia,* I. Willner*, Dynamic Fusion of Nucleic Acid Functionalized     Nano-/Micro-Cell-Like Containments: From Basic Concepts to Applications. ACS     Nano 2023, 17, 16, 15308−15327.

    [4]     Z. Li+, J. Wang+,     I. Willner*, Transient Out-of-Equilibrium Nucleic Acid-Based Dissipative     Networks and Their Applications. Adv. Funct. Mater. 2022,     32, 2200799.

    [5]     Z. Li+, J. Wang+,     Z. Zhou+, M. P. O'Hagan, I. Willner*. Gated Transient     Dissipative Dimerization of DNA Tetrahedra Nanostructures for Programmed     DNAzymes Catalysis. ACS Nano, 2022, 16, 3625−3636.

    [6]     J.     Wang+, Z. Li+, I. Willner*, Dynamic Reconfigurable     DNA Nanostructures, Networks and Materials. Angew. Chem. Int. Ed. 2023,     62, e202215332.

    [7]     J. Wang+,     Z. Li+, I. Willner*, Cascaded dissipative DNAzyme-driven layered     networks guide transient replication of coded-strands as gene models. Nat.     Commun. 2022, 13, 4414.

    [8] J. Wang+,     Z. Li+, Z. Zhou, Y. Ouyang, J. Zhang, X. Ma, H .Tian, I.     Willner*. DNAzyme- and light-induced dissipative and gated DNA networks. Chem.     Sci. 2021, 12 (33), 11204–11212.

    [9]     Z. Li, X. Zhou, J. Yang, B. Fu, Z. Zhang*.     Near-Infrared-Responsive Photoelectrochemical Aptasensing Platform Based on     Plasmonic Nanoparticle-Decorated Two- Dimensional Photonic Crystals. ACS     Appl. Mater. 2019, 11, 21417−21423.

    [10]     Z. Li, C. Su, D. Wu, Z. Zhang*. Gold Nanoparticles     Decorated Hematite Photoelectrode for Sensitive and Selective     Photoelectrochemical Aptasensing of Lysozyme. Anal. Chem. 2018,     90, 961−967.

    [11] Z. Li, Z. Zhang*.     Tetrafunctional Cu2S thin layers on Cu2O nanowires     for efficient photoelectrochemical water splitting. Nano Res. 2018,     11(3), 1530–1540.

    [12] Z. Li, Y. Xin, W.     Wu, B. Fu, Z. Zhang*. Phosphorus Cation Doping: A New Strategy for Boosting     Photoelectrochemical Performance on TiO2 Nanotube Photonic     Crystals. ACS Appl. Mater. 2016, 8, 30972−30979.

    [13] Z. Li, Y. Xin, W. Wu, B. Fu, Z.     Zhang*. Topotactic Conversion     of Copper (I) Phosphide Nanowires for Sensitive Electrochemical Detection     of H2O2 Release from Living Cells. Anal. Chem.     2016, 88, 7724–7729.

    [14] Z. Li, Y. Xin, Z. Zhang*. New Photocathodic     Analysis Platform with Quasi-Core/Shell-Structured TiO2@Cu2O     for Sensitive Detection of H2O2 Release from Living     Cells. Anal. Chem. 2015, 87, 10491–10497.

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