姓    名: 李梅金
性    别:

 

职    称: 研究员(博导)
学    历: 博士
职    务: 教师
电    话: 0591-22866135
专    业: 分析化学
电子邮件: mjli@fzu.edu.cn
研究方向: 发光材料的设计合成和应用

教育工作经历
1999年厦门大学理学学士,
2002年厦门大学理学硕士,
2006年香港大学博士,
2006年至2008年香港大学博士后研究工作,
2008-今 福州大学任教,
2015-2016年,美国乔治城大学(Georgetown University)访问学者。
 

教学简介
本科《仪器分析》、《分析化学实验》、《无机与定量分析试验》以及硕士生《发光分析》 

科研简介
研究兴趣
功能金属配合物发光材料的合成与研究,光化学传感器,纳米传感器
 

社会兼职
 

科研项目
1.国家自然科学基金:基于d6过渡金属配合物的多功能纳米材料的合成及生物医学应用(No.21171038)
2.国家自然科学青年基金:基于新型铼配合物与金纳米粒子相互作用的发光材料及其在生物酶传感器 (No. 20801014 )
3.福建省青年基金:新型铱配合物发光材料的设计合成及其电致化学发光和应用研究(No. 2009J05026 )
4. 福州大学发展基金:新型铼配合物发光材料对金纳米粒子的修饰及其应用 ( No. 2008-XQ-08 )
5. 福州大学人才引进基金:功能化钌配合物的设计合成及应用 (No. 826505)
 

代表性论文
1. J. Mu, Q. Feng, X. Chen, J. Li, H. Wang, M.-J Li*.Silica nanoparticles doped with an iridium(III) complex for rapid and fluorometric detection of cyanide, Microchimica Acta, 2015, 182(15), 2561-2566.
2. Q. Wang, W. Hu, Q. Feng, X.i Cao, W. Chai, C. Yi, M.-J. Li*. Coumarin-modified gold nanoprobes for the sensitive detection of caspase-3 , RSC Adv., 2015, 5, 43824-43830.
3. M.-J. Li*, Z. Lin, X. Chen and G. Chen. Colorimetric and luminescent bifunctional Ru(II) complexes for rapid and highly sensitive recognition of cyanide, Dalton Trans., 2014,43, 11745-11751.
4. M.-J. Li*, T. Lan, X. Cao, Hu. Yang, Y. Shi, C. Yi*, G. Chen. Synthesis, characterization, DNA binding, cleavage and cytotoxicity of copper(II) complexes, Dalton Trans.,2014,43,2789-2798.
5. M.-J. Li*, T. Lan, Z. Lin, C. Yi, G. Chen. Synthesis, characterization, and DNA binding of a novel ligand and its Cu(II) complex, J Biol Inorg Chem, 2013,18,993–1003.
6. G. Jin, L. Lu, X.o Gao, M.-J. Li*, B. Qiu, Z. Lin*, H. Yang, G. Chen. Magnetic graphene oxide-based electrochemiluminescent aptasensor for thrombin, Electrochimica Acta 89, 2013,13–17.
7. M.-J. Li*, X. Liu, Y. Shi, R. Xie, Q. Wei, and G. Chen. Synthesis, structure, photophysics and electrochemiluminescence of Re(I) tricarbonyl complexes with cationic 2,2-bipyridyl ligands,Dalton Trans., 2012, 41, 10612–10618.
8. M.-J. Li, K. M.-C. Wong, C. Yi, and V. W.-W. Yam*. New Ruthenium(II) Complexes Functionalized with Coumarin Derivatives:Synthesis, Energy-Transfer-Based Sensing of Esterase, Cytotoxicity, and Imaging Studies, Chem. Eur. J., 2012, 18, 8724 – 8730.
9. M.-J. Li*, X. Liu, M. Nie, Z. Wu, C. Yi, G. Chen, and Vivian Wing-Wah Yam. New Rhenium(I) Complexes: Synthesis, Photophysics, Cytotoxicity, and Functionalization of Gold Nanoparticles for Sensing of Esterase, Organometallics, 2012, 31(12), 4459-4466.
10. M.-J. Li*, M. Nie, Z. Wu, X. Liu, G. Chen*, Colorimetric and luminescent bifunctional Ru(II) complex-modified gold nano probe for sensing of DNA, Biosensors and Bioelectronics,2011, 29, 109–114.
11. M.-J. Li*, M. Lin, R. Xie, X. Liu, Q.-H. Wei, G.. Chen. Synthesis and electrochemiluminescence studies of tricarbonyl rhenium(I)complexes with a cationic 2,2-bipyridyl ligand, Electrochimica Acta, 2011, 56, 9344–9349.
12. M.-J. Li*, C. Zhan, M. Nie, G.n Chen, X. Chen*. Selective recognition of homocysteine and cysteine based on new ruthenium(II) complexes. J. Inorg. Biochem. 2011, 105, 420-425.
13. M.-J. Li*, P. Jiao, M. Lin, W. He, G. Chen and X. Chen*. High electrochemiluminescence of a new water-soluble iridium(III) complex for determination of antibiotics, Analyst, 2011, 136, 205–210.
14. M.-J. Li, W.-M. Kwok, V. W.-W. Yam and D. L. Phillips. Synthesis of Coumarin-Appended Pyridyl Tricarbonylrhenium(I) 2,2’-Bipyridyl Complexes with Oligoether Spacer and Their Fluorescence Resonance Energy Transfer (FRET) Studies. Organometallics, 2009, 28, 1620–1630.
15. M.-J. Li, Z. Chen, V. W.-W. Yam and Y. Zu. Multifunctional Ruthenium (II) Polypyridine Complex-Based Core-Shell Magnetic Silica Nanocomposites: Magnetism, Luminescence and Electrochemiluminescence. ACS Nano, 2008, 2, 905-912.
16. M.-J. Li, Z. Chen, N. Zhu, V. W.-W. Yam and Y. Zu. Electrochemiluminescence of Ruthenium(II) Complexes Functionalized with Crown Ether Pendants and Effects of Cation-Binding. Inorganic Chemistry, 2008, 47, 1218-1223.

 

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