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2个国家一流专业建设点:化学、材料化学

2个教育部新工科建设项目专业:化学工程与工艺、材料化学

师资队伍

无机化学教研室

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李佳

发布日期:2023-07-08    作者:     来源:     


李佳,男,博士,讲师厦门大学化学专业学士,厦门大学物理化学专业博士。主要研究兴趣包括:分子动力学研究纳米材料在外源激励下的响应和输运性质;碳团簇、碳纳米材料结构、反应、非线性光学性质的理论化学研究

主持国家自然科学基金1项(219650152024年结题),参与多项国家自然科学基金项目,主持省教育厅科技项目1项(GJJ170652,已结题),横向课题一项。主持科研经费总额60余万元。研究工作在在Nature ChemistryNature Communications, J. Am. Chem. Soc., Chemical Science, J. Mol. Struct., Frontiers in Chemistry等国际主流杂志发表SCI论文二十篇。

主讲课程

主要承担结构化学、无机化学、无机化学实验、物理化学、物理化学实验等课程。

主要研究方向

1. 分子动力学研究纳米材料在外源激励下的响应和输运性质

2. 碳团簇、碳纳米材料结构、反应、非线性光学性质的理论化学研究

主持课题

1. 国家自然科学基金1项(21965015,卤化富勒烯结构预测及生成机理的理论研究,2024年结题)

2. 江西省教育厅科技项目1项(GJJ170652,多加成富勒烯衍生物结构预测的算法研究,已结题)

3. 企业横向课题1项(仪器参数优化相关算法开发,已结题)

5年代表性成果

1. Li, J.; Wang, Y.-F.; Huang, J.; Yang, K.; Wang, Z.-J.; Liu, X.-X.; Li, Z.-R. Torch-like High-Performance NLO and Electrochromic Bifunctional Molecular Switch Exhibiting Superalkalide and Superalkali Metal Salt Characteristics. Journal of Molecular Structure 2024, 1297, 136970.

2. Li, J.; Yu, P.; Lai, P.; Zou, J.; Liu, Z.; Yi, X.; Wang, W.; Pan, C. Regioselective Radical Reaction of Monometallofullerene Y@C-2v(9)-C-82 With N-Arylbenzamidine Mediated by Silver Carbonate. Front. Chem. 2020, 8, 593602.

3. Li, J.; Shi, L.-S.; Yi, X.-G.; Fang, X.-N.; Guo, T.; Li, Y.-X. Preparation, Structure, Fluorescence, Semiconductor Properties and TDDFT Calculation of a Mononuclear Zinc Complex with Mixed Ligands. Chin. J. Struct. Chem. 2020, 39 (3), 551–558.

4. Yi, X.-G.; Wang, Y.-F.; Zhang, H.-R.; Cai, J.-H.; Liu, X.-X.; Li, J.; Wang, Z.-J.; Bai, F.-Q.; Li, Z.-R. Can a Molecular Switch Exist in Both Superalkali Electride and Superalkalide Forms? Phys. Chem. Chem. Phys. 2022, 24 (9), 5690–5699.

5. Wang, Z.-J.; Wang, Y.-F.; Zeng, J.-M.; Zhang, W.; Liu, X.-X.; Li, J.; Li, Z.-R. Theoretical Insights into Single-Pole Quadruple-Throw (SP4T) Inorganic Nonlinear Optics Molecular Switch of Na(HCN)3Na: From Superalkali to Superalkalides. J. Mater. Chem. C 2022, 10 (44), 16789–16802.

6.Wang, Y.-F.; Huang, J.; Wang, Z.-J.; Liu, X.-X.; Li, J.; Li, Z.-R. Superalkali-Alkalide Ion Pairs Δ+(M-HMHC)-M’δ - (M, M’ = Li, Na and K) Serving as High-Performance NLO Molecular Materials. Journal of Molecular Liquids 2022, 349, 118101.

7. Wang, Y.-F.; Wang, J.-J.; Li, J.; Liu, X.-X.; Wang, Z.-J.; Huang, J.; Li, Z.-R. From an Electride-like Super Alkali Earth Atom to a Superalkalide or Superalkali Electride: M(HF) 3 M (M = Na or Li) as Field-Induced Excellent Inorganic NLO Molecular Switches. J. Mater. Chem. C 2021, 9 (41), 14885–14896.

8. Wang, Y.-F.; Qin, T.; Wang, J.-J.; Liu, X.-X.; Wang, Z.-J.; Huang, J.; Li, J.; Li, Z.-R. Switching from an Electride-like Molecule to the Molecular Electride K-F 6 C 6 H 6 Driven by an Oriented External Electric Field. Phys. Chem. Chem. Phys. 2021, 23 (2), 1443–1453.

9. Yi, X.-G.; Wang, Y.-F.; Qin, T.; Liu, X.-X.; Jiang, S.-L.; Huang, J.; Yang, K.; Li, J.; Li, Z.-R. Electric Field Induced Intra-Molecular Self-Redox: Superalkali Li3N3Mg as a Candidate for NLO Molecular Switches. Phys. Chem. Chem. Phys. 2020, 22 (38), 21928–21937.

10. Yi, X.-G.; Fang, X.-N.; Wang, Y.-F.; Guo, J.; Li, J. Synthesis, Characterization, Properties, and Theoretical Calculation of an Inorganic-Organic Hybrid Mononuclear Copper(II) Complex Containing 3-Hydroxy-2-Methyl-Quinoline-4-Carboxylate. J. Chem. Crystallogr. 2020, 50 (4), 348–356.

11. Yi, X.-G.; Fang, X.-N.; Guo, J.; Li, J.; Xie, Z.-P. Hydrothermal Preparation, Crystal Structure, Photoluminescence and UV-Visible Diffuse Reflectance Spectroscopic Properties of a Novel Mononuclear Zinc Complex. Acta Chim. Slov. 2020, 67 (2), 507–515.

12. Wang, Y.-F.; Yi, X.-G.; Fang, X.-N.; Li, J.; Xu, Y.; Xie, S.-K. Hydrothermal Preparation, Crystal Structure, a Series of Properties and Theoretical Calculation of a Novel Cadmium Compound. Inorg. Nano-Met. Chem. 2020.

13. Wang, Y.-F.; Qin, T.; Tang, J.-M.; Liu, Y.-J.; Xie, M.; Li, J.; Huang, J.; Li, Z.-R. Novel Inorganic Aromatic Mixed-Valent Superalkali Electride CaN3Ca: An Alkaline-Earth-Based High-Sensitivity Multi-State Nonlinear Optical Molecular Switch. Phys. Chem. Chem. Phys. 2020, 22 (10), 5985–5994.