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讲师

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石永胜

发布日期:2025-04-05

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       称:讲师

办公邮箱:shiyongsheng@jxstnu.edu.cn

办公地址:枫林校区行政楼301

研究方向:功能晶态发光材料

教育背景

20219月~20246月 北京师范大学 无机化学专业 理学博士

20189月~20216月 华北理工大学 化学工程与技术专业 工学硕士

20149月~20186月 华北理工大学 应用化学专业 工学学士

工作经历

20247月~至今 江西科技师范大学  讲师(校聘教授)

讲授课程

本科生:《有机化学》、《仪器分析实验》等

研究生:《X射线晶体学》

科研项目

江西科技师范大学博士科研启动基金项目,项目批准号2024BSQD72,主持

主要科研成果

目前主要从事功能晶态发光材料的设计、合成与光学性能研究。目前,以第一作者/通讯作者在SmallChemical Engineering JournalInorganic Chemistry FrontiersInorganic ChemistryJournal of Molecular StructureDalton TransactionsCrystEngComm等国际学术期刊发表SCI论文13篇。

主要代表学术论文/论著/专利

ORCID: https://orcid.org/my-orcid?orcid=0009-0009-0164-8339

Web of Science Researcher IDMTE-7581-2025

1. Liu, S. J.#; Shi, Y. S.#; Wang, R. Y.; Xiao, T.; Xia, Z. G.; Wang, R.; Zheng, X. J*. Facile preparation, mechanochromic luminescence and excitation wavelength-dependent emission of tetra(1H-benzo[d]imidazol-2-yl)ethene Zn(II) complexes and their applications. Dalton Trans 2025, 54 (9), 3619-3625.

2. Shi, Y.-S.; Xiao, T.; Yang, D.-D.; Zheng, X.-J*. Incorporation of a one-dimensional electron-rich chain in viologen-based coordination polymers for super photochromic properties and improved optical applications in polyvinyl alcohol film. Inorganic Chemistry Frontiers 2024, 11, 3200–3210.

3. Shi, Y. S.; Xiao, T.; Yang, D. D.; Xia, Z. G.; Zheng, X*. J. Dynamic Fluorescence Sensing of Bromide Ions by Photochromic Bi(III)-Coordination Polymers Based on a Ligand Integrated by Naphthalene Diimides and Pyridinium in Solution and Films. Small 2023, 2309076.

4. Shi, Y.-S.; Yang, D.-D.; Xiao, T.; Xia, Z.-G.; Fang, Y.-H.; Zheng, X.-J*. Photoinduced multi-color emission of naphthalenediimide radical in different solvents and dynamic anti-counterfeiting film. Chemical Engineering Journal 2023, 472,145152.

5. Shi, Y.-S.; Yang, D.-D.; Xiao, T.; Fang, Y.-H.; Xia, Z.-G.; Zheng, X.-J*. Naphthalenediimide-based photochromic MOFs: Structure visualization upon radical formation, and applications in purple light detection, inkless printing and anti-counterfeiting. Chemical Engineering Journal 2023, 462, 142275.

6. Shi, Y. S.; Yang, D. D.; Zheng, H. W.; Liang, Q. F.; Fang, Y. H.; Xiao, T.; Zheng*, X. J. Solvent-Modulated Self-Assembly of Naphthalenediimide-Based Cd(II) Complexes and the Controllable Photochromism via Conformational Isomerization. Inorg Chem 2022, 61 (40), 15973-15982.

7. Yang, Y.-Y.; Ma, P.-Y.; Xue, J.-H.; Yang, D.-D.*; Shi, Y.-S.*; Zhao, X.; Ma, Q*. A highly selective fluorescent probe based on multi-binding site hydrazone chemosensor for Al3+ detection. Microchemical Journal 2024, 200, 110495.

8. Shi, Y.-S.; Hao, Z.-C.; Han, C.; Cui, G.-H*. Synthesis, crystal structures, and luminescence sensing properties of two metal complexes containing bis(thiabendazole) moieties. Journal of Molecular Structure 2020, 1201.

9. Shi, Y.-S.; Yu, Q.; Zhang, J.-W.; Cui, G.-H*. Four dual-functional luminescent Zn(ii)-MOFs based on 1,2,4,5-benzenetetracarboxylic acid with pyridylbenzimidazole ligands for detection of iron(III) ions and acetylacetone. CrystEngComm 2021, 23 (7), 1604-1615.

10. Shi, Y.-S.; Xiao, Q.-Q.; Fu, L.; Cui, G.-H*. Three water-stable luminescent two-dimensional CdII-based coordination polymers as sensors for highly sensitive and selective detection of Cr2O72- and CrO42- anions. CrystEngComm 2020, 22 (29), 4875-4886.

11. Shi, Y.-S.; Liu, D.; Fu, L.; Li, Y.-H.; Dong, G.-Y*. Five water-stable luminescent CdII-based metal–organic frameworks as sensors for highly sensitive and selective detection of acetylacetone, Fe3+ and Cr2O72- ions. CrystEngComm 2020, 22 (24), 4079-4093.

12. Shi, Y.-S.; Li, Y.-H.; Cui, G.-H.; Dong, G.-Y*. New two-dimensional Cd(ii) coordination networks bearing benzimidazolyl-based linkers as bifunctional chemosensors for the detection of acetylacetone and Fe3+. CrystEngComm 2020, 22 (5), 905-914.

13. Shi, Y.-S.; Liu, D.; Li, Y.-H.; Dong, G.-Y*. Synthesis, Crystal Structures, and Photocatalytic Activity of Two Nickel(II) Coordination Polymers with Flexible Bis(benzimidazol-1-yl)alkane and Polycarboxylate Ligands. Journal of Inorganic and Organometallic Polymers and Materials 2019, 30 (4), 1099-1109.



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