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王艳琴

副教授,硕士生导师

办公室:化学楼南楼201

电话:0471-893511260201

邮箱:wangyq_ecnu@163.com

 

 

教育背景

2006-2009华东师范大学化学系读硕士,获理学硕士学位

2004-2009:华东师范大学化学系读博士,获理学博士学位

工作经历

2012-2016:内蒙古大学化学化工学院讲师

2016-至今:内蒙古大学化学化工学院副教授

学术兼职

2018至今:中国化学会会员

2018至今:英国皇家化学会期刊Dalton Transactions审稿人

 

荣誉与奖励

2014年,上海市优秀博士学位论文奖(排名第一)

研究领域

1.      分子磁性材料

基于配位化合物尤其是配位聚合物的分子基磁体的合成、结构与磁性研究

2.      分子多孔材料

   具有开放骨架的多孔配位聚合物(或金属-有机骨架材料MOFs)的合成、结构、功能化及其应用。

3.  分子荧光传感材料

   具有荧光性质的MOFs的合成、结构及荧光传感性质研究。

4. 多功能分子材料

在配位聚合物中引入两种或多种功能获得复合功能材料, 如多孔磁体等。

教学

主讲化学化工学院大四《生物材料及应用》、《胶体与界面化学》、研究生《分子磁性材料》、全校通识课《化学与健康》

 

研究项目

1.国家自然科学基金,“基于联吡啶基多羧酸配体的多功能金属有机框架的变色现象、后修饰及荧光传感性质研究”,2018/01-2021/12,主持。

2. 内蒙古自然科学基金,“基于吡啶基羧酸配体的镧系金属有机骨架配合物的荧光性质研究”,2017/01-2019/12,主持。

3.国家自然科学基金,“基于两性离子型配体的类卤素-膦酸根(-羧基)混桥单链磁体的设计与性质研究”,2014/01-2016/12,主持。

4.内蒙古自然科学基金,高维分子磁体和单链磁体的设计与性质”,2013/01-2015/12,主持。

5.内蒙古大学高层次人才科研启动项目,基于叠氮离子和两性离子配体的混桥单链磁体的设计和性质研究 2013/01-2015/12,主持。

 

代表性成果

发表SCI期刊学术论文34篇,其中第一作者和第一通讯作者的21篇,其中IF > 3.016篇;国内学术会议做口头报告一次。

论文:

1.       Xiao-Yu Guo, Fei Zhao, Jing-Juan Liu, Zhi-Liang Liu, and Yan-Qin Wang*, An ultrastable zinc(II)-organic framework as a recyclable multi-responsive luminescent sensor for Cr(III), Cr(VI) and 4-nitrophenol in the aqueous phase with high selectivity and sensitivity, J. Mater. Chem. A, 2017, 5, 20035–20043.

2.       Yan-Qin Wang, Qi Yue and En-Qing Gao*, Effects of Metal Blending in Random Bimetallic Single-Chain Magnets: Synergetic, Antagonistic, or Innocent. Chem. Eur. J. 2017, 23, 896- 904.

3.       Xiao-Yu Guo, Fei Zhao, Hou-Ting Liu, Yan-Qin Wang*, Zhi-Liang Liu* and En-Qing Gao, Five new 2D and 3D coordination polymers based on two new multifunctional pyridyl–tricarboxylate ligands: hydrothermal syntheses, structural diversity, luminescent and magnetic properties. RSC Adv., 2017, 7, 19039-19049.

4.       Qing-Hua Tan, Yan-Qin Wang*, Xiao-Yu Guo, Hou-Ting Liu and Zhi-Liang Liu,* A gadolinium MOF acting as a multi-responsive and highly selective luminescent sensor for detecting o-, m-, and p-nitrophenol and Fe3+ ions in the aqueous phase. RSC Adv., 2016, 6, 61725-61731.

5.       Yan-Qin Wang, Qing-Hua Tan, Xiao-Yu Guo, Hou-Ting Liu, Zhi-Liang Liu* and En-Qing Gao*, Novel manganese(II) and cobalt(II) 2D polymers containing alternating chains with mixed azide and carboxylate bridges: crystal structure and magnetic properties. RSC Adv., 2016, 6, 72326-72332.

6.       Yan-Qin Wang, Qing-Hua Tan, Hou-Ting Liu, Wei -Suna andZhi-Liang Liu*, A luminesc ent europium MOF containing Lewis basic pyridyl site for highly selective sensing of o-, m- and p-nitrophenol, RSC Adv., 2015, 5, 86614.

7.       Qing-Hua Tan, Yan-Qin Wang*, Hou-Ting Liu, Zhi-Liang Liu*, Two new carboxylateoxygen bridged trinuclear M(II) (M_Mn and Co) compounds with zwitterionic dicarboxylate ligands: crystal structures and magnetism, Inorg. Chem. Commun. 2015, 58, 67-70.

8.       Yan-Qin Wang, Hou-Ting Liu, Yan Qi and En-Qing Gao*, Topological ferrimagnetic behaviours of coordination polymers containing manganese(II) chains with mixed azide and carboxylate bridges and alternating F/AF/AF’/AF’/AF interactions,  Dalton Trans., 2014, 43, 11819-11825.

9.       Yan-Qin Wang, Yan-Fei Gao, Qing-Hua Tan, Zhi-Liang Liu, En-Qing Gao*, A new cobalt coordination polymer based on Co(II)-azide chains and a tetrapyridyl ligand: Synthesis, unprecedented topology and magnetism, Inorg. Chem. Commun. 2014,45,101-104.

10.   Yan-Qin Wang, Qi Yue, Yan Qi, Kun Wang, Qian Sun, and En-Qing Gao*, Manganese(II), Iron(II), and Mixed-Metal Metal-Organic Frameworks Based on Chains with Mixed Carboxylate and Azide Bridges: Magnetic Coupling and Slow Relaxation, Inorg Chem. 2013, 52, 4259-4268.

11.   Yan-Qin Wang, Ai-Ling Cheng, Pei-Pei Liu and En-Qing Gao*,Unusual frameworks composition dependence of magnetic relaxation for CoII1-xNiIIxchain-based metal–organic frameworks.  Chem. Commun. 2013, 49, 6995-6997.

12.   Yan-Qin Wang, Zhi-liang Liu* and En-Qing Gao, Structure and Magnetic Properties of a Manganese Complex with 1-Carboxymethylpyridinium-3-carboxylate,Chinese J. Struct. Chem. 2013, 32, 1761-1766.

13.   Yan-Qin Wang, Ai-Ling Cheng, Xuan Wang and En-Qing Gao*, Mixed azide and carboxylate bridged trinuclear Mn(II) and Co(II) motifs in coordination ladders: structures and magnetism, RSC Adv., 2012, 2, 10352-10358.

14.   Yan-Qin Wang, Qian Sun and En-Qing Gao*, Novel three-dimensional framework based on Co(II)-azide chains and a tetrapyridyl ligand, Inorg. Chem. Commun. 2012,15,8-11.

15.   Yan-Qin Wang, Wei-Wei Sun, Zhen-Dong Wang, Qin-Xiang Jia, En-Qing Gao* and You Song, Solvent-modulated slow magnetic relaxation in a two-dimensional compound composed of cobalt(II) single-chain magnets, Chem. Commun. 2011, 47, 6386-6388.

16.   Yan-Qin Wang, Xiu-Mei Zhang, Xiu-Bing Li, Bing-Wu Wang, and En-Qing Gao*, Magnetic Systems with Mixed Carboxylate and Azide Bridges: Slow Relaxation in Co(II) Metamagnet and Spin Frustration in Mn(II) Compound,  Inorg Chem. 2011, 50(13), 6314-6322.

17.   Yan-Qin Wang, Qian Sun, Qi Yue,Ai-Ling Cheng, You Song and En-Qing Gao*, Manganese(II)-carboxylate-pseudohalide systems derived from 1,4–bis(4-carboxylatopyridi nium-1-methylene)benzene: structures and magnetism, Dalton Trans. 2011,40,10966-10974.

18.   Yan-Qin Wang, Qin-Xiang Jia, Kun Wang, Ai-Ling Cheng, and En-Qing Gao*, Diverse Manganese(II) Coordination Polymers with Mixed Azide and Zwitterionic Dicarboxylate Ligands: Structure and Magnetic Properties. Inorg Chem. 2010, 49(4), 1551-1560.

19.   Yan-Qin Wang and En-Qing Gao*, Molecular and Supramolecular Structures of Manganese(II) and Cobalt(II) Complexes with 1-Carboxymethylpyridinium– 4-carboxylate, Chinese J. Struct. Chem, 2010, 29(9),1331-1336.

20.   Yan-Qin Wang, Kun Wang, Qian Sun, Hua Tian, En-Qing Gao* and You Song, Novel manganese(II) and cobalt(II) 3D polymers with mixed cyanate and carboxylate bridges: crystal structure and magnetic properties, Dalton Trans. 2009, 9854-9859.

21.   Yan-Qin Wang, Jian-Yong Zhang, Qin-Xiang Jia, En-Qing Gao* and Cai-Ming Liu. Unprecedented Self-Catenated Eight-Connected Network Based on Novel Azide-Bridged Tetramanganese(II) Clusters, Inorg Chem. 2009, 48(3), 789-791.