副教授

刘会艳

发布者:李甜甜发布时间:2014-03-31浏览次数:6135

姓名:刘会艳

系所:化学系

职称:副教授


个人简介:

刘会艳,副教授,理学博士,硕士生导师;近年来参与国家自然科学基金项目及主持江苏省教育厅自然科学基金项目;在Inorg. Chem., CrystEngComm和RSC Advance等国内外学术期刊上发表SCI论文30余篇。


研究领域:

1. 多孔金属有机框架材料(MOFs)的构建;

2. 多孔框架材料在气体吸附与分离、分子/离子识别等方面的应用。


教育背景:

2012年9月—2017年6月:南京大学化工学院博士研究生;

1998年9月—2001年6月:兰州大学化工学院硕士研究生。


主讲课程:

本科生:《无机化学》《无机化学实验》


科研项目:

1. 哌嗪/酰胺混合功能化的羧酸配体构筑的金属-有机骨架材料的合成及吸附性能研究, 博士学位教师科研支持项目(17XLR044), 9万, 2018.01-2019.12;

2. 新型金属超分子功能材料的设计、结构及应用研究, 江苏省教育厅自然科学研究一般项目(08KJD150018), 2万, 2008.01-2010.12。


主要论文:

1. Hui-Yan Liu,* Gui-Mei Gao, Jie Liu, Fen-Lin Bao, Yu-Hui Wei and Hai-Ying Wang,* Amide-functionalized ionic indium–organic frameworks for efficient separation of organic dyes based on diverse adsorption interactions, CrystEngComm, 2019, 21, 2576-2584.

2. Hui-Yan Liu, Gui-Mei Gao, Fen-Lin Bao, Yu-Hui Wei, Hai-Ying Wang,* Enhanced water stability and selective carbon dioxide adsorption of a soc-MOF with amide-functionalized linkers, Polyhedron, 2019, 160, 207-212.

3. Hui-Yan Liu,* Jie Liu, Gui-Mei Gao, and Hai-Ying Wang,* Assembly of two metal−organic frameworks based on distinct cobalt dimeric building blocks induced by ligand modification: gas adsorption and magnetic properties, Inorganic Chemistry, 2018, 57, 10401-10409.

4. Hui-Yan Liu,* Gui-Mei Gao, Jie Liu, Hai-Ying Wang,* Two metal–organic frameworks based on carboxyphenyl–terpyridine ligands: Synthesis, structure and highly luminescent sensing of nitrobenzene, Polyhedron, 2018, 152, 11-16.

5. Huiyan Liu, Fei Meng, Zhiyong Lu, Junfeng Bai, A S4N4-like [Co4(μ-Cl)4] based metal–organic framework with sum topology and selective CO2 uptake, CrystEngComm, 2016, 18, 9003-9006.

6. Hui-Yan Liu, Liang-Feng Chen, Hai-Ying Wang,* Yu Wan, Hui Wu, Synthesis and photophysical properties of novel fluorescent materials containing 2,4,6-triphenylpyridine and 1,8-naphthalimide units using Suzuki reaction, RSC Advance, 2016, 6, 94833-94839.

7. Huiyan Liu,* Qian Wang, Mingxing Zhang, Jingjing Jiang, A (3,6)-connected metal–organic framework with high CH4 binding affinity and uptake capacity, CrystEngComm, 2015, 17, 4793-4798.