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南京农业大学理学院导师教师师资介绍简介-吴华

/2021-03-27




姓名: 吴华 性别: 女
院系: 理学院化学系 职称: 教授/博士生导师
学历: 博士研究生 毕业学校: 东北师范大学

从事专业: 无机化学
研究方向: 有机-无机杂化功能材料
电话:15996257980
电邮:wuhua@njau.edu.cn




吴华,教授,博士生导师,南京农业大学理学院教师,主要从事功能配合物材料研究。 1993 年毕业于哈尔滨师范大学化学化工学院,2006 年和 2011 年分别获得东北师范大学获硕士和博士学位。2012
年 8 月入职南京农业大学理学院工作,2016
年荣获江苏省“青蓝工程”中青年学术带头人。其主要研究工作是致力于具有超级电容器、锂电池性能及具有光学性质、生物学活性、磁学及优异催化性能的新型有机-无机杂化材料的设计合成与性质研究。主要研究方向有:(
1)基于多金属氧酸的有机-无机杂化材料的设计与合成及在电池方向应用;
(2)微米及纳米孔金属-有机晶体材料的合成及在锂电、环境污染物降解去除;(3)基于
多金属氧盐的农药分子设计合成与抗菌活性研究。主持承担了国家自然科学基金面上项目、江苏自然科学基金面上项目、中国博士后基金项目、中央高校基本科研业务经费、江苏省博
士后基金、国家配位化学重点实验室开放课题等多项科研项目。近年来,在 J. Am. Chem. Soc.、 ACS Appl. Mater. Interfaces. 、Chem. Commun.,
Dalton Trans., Cryst. Growth Des., Journal of Power Sources.、CrystEngComm 等国际期刊上发表论文多篇。


1. 主持国家自然科学基金面上项目 1 项
2. 主持江苏省自然科学基金面上项目 1 项
3. 主持中央高校基本科研业务经费 1 项
4. 主持江苏省博士后科学基金 1 项
5. 主持中国博士后科学基金 1 项
6. 作为第 1 参与人完成国家自然科学基金 1 项(21071028)
7. 主持南京大学配位化学重点实验室开放基金 1 项
8. 主持黑龙江省教育厅课题 1 项(11535035 )


获“青蓝工程”中青年学术带头人


主要从事无机化学、无机及分析化学实验、研究生讨论班、学科导论等课程。




汪快兵:副教授,博士研究生,毕业于南京大学。主要从事微/纳米配合物粒子、配合物单晶材料(MOFs)的可控制备与生物性能研究及其在超级电容器、锂离子电池、电催化方面的应用研究。主持江苏省青年基金等项目,
论文主要发表在 ACS Applied Materials & Interfaces,Journal of
Power Sources,Chemsitry-A European Journal 等期刊。

毛菲菲:讲师,博士研究生,毕业于中国科学院福建物质结构研究所物理化学专业,主要从事非线性光学晶体材料方面研究。论文主要发表在 Angew. Chem., Int,
Ed.、Chem. Mater.、Inorg. Chem.等。


(21) Wang, K.; Wang, Z.; Wang, X.; Zhou, X.; Tao, Y.; Wu, H.* Flexible
long-chain-linker constructed Ni-based metal-organic frameworks with 1D helical
channel and their pseudo-capacitor behavior studies. Journal of Power Sources., 2018, 377:
44–51.
(20) Wang, K.; Cao, X.; Wang, S.; Zhao, W.; Xu, J.; Wang, Z.; Wu, H. *
Interpenetrated and polythreaded CoII-organic frameworks as a supercapacitor electrode material
with ultrahigh capacity and excellent energy delivery e?ciency. ACS Appl. Mater.
Interfaces. 2018, 10, 9104?9115.
(19) Zhang, X.; Xi, R.; Yin, S.; Cao, X.; Zhang, Y.; Lin, L.; Chen, R.; Wu, H.*
Three inorganic-organic hybrid complexes based on isopolymolybdate and derivatives
of 1H-4-nitroimidazole. Journal of Solid State Chemistry., 2018, 258: 737–743.
(18) Shi, C.; Wang, Z.; Chen, Y.; Wu, H.* Structural diversity of four coordination
polymers based on 5-nitro-1,2,3-benzenetricarboxylic acid (H3nbta): Solvothermal syntheses,
structural characterizations and properties. Journal of Solid State Chemistry., 2017, 253: 35-42.
(17) Tao, Y.; Zhou, X.; Wang, Z.; Shi, Y.; Guo, Y.; Wu, H.* Two CdII-containing coordination
polymers based on trinuclear and dodecanuclear clusters. Inorganic
Chemistry Communications., 2016, 70, 90–94.
(16) Wu, H.*; Shi, C.; Zhao, Y.; Jiang, Y.; Tao, Y. Three coordination polymers based on different
carboxylates, metals and a tri(4-imidazolylphenyl)amine ligand. Journal of Molecular
Structure., 2015, 1086, 276– 281.
(15) Wu, H.*; Lu X; Yang, C.-L.; Dong, C.-X.; Wu, M.-S. Diverse topologies of seven
d10 coordination polymers constructed from a long ligand and different
carboxylates. CrystEngComm., 2014, 992 – 1000.
(14) Wu, H.* Lu, X.-L.; Lü, B.; Dong, C.-X.; Wu, M.-S. A novel three-dimensional AgI
coordination polymer based on mixed naphthalene-1,5-disulfonate and aminoacetate ligands. Acta
Cryst. C69. 2013.
(13) Wu, H.; Yang, J.* Liu, Y.-Y.; Ma, J.-F.* pH-Controlled assembly of two unusual entangled
motifs based on a tridentate ligand and octamolybdate clusters: 1D + 1D →
3D

poly-pseudorotaxane and 2D → 2D → 3D polycatenation. Crystal Growth & Design., 2012,
12, 2272–2276.
(12) Wu, H.; Yang, J.* Ma, J.-F.* Liu, Y.-Y.; Xie, T.-F. Syntheses, structures and photoelectronic
properties of a series of tri- and tetra-nuclear metal complexes based on a ligand. Polyhedron,
2012, 31, 136–142.
(11) Wu, H.; Yang, J.* Su, Z.-M.; Stuart, R. B.; Ma, J.-F.* An Exceptional 54-fold interpenetrated
coordination polymer with 103-srs network topology. J. Am. Chem. Soc., 2011, 133, 11406– 11409.
(10) Wu, H.; Liu, H.-Y.; Liu, Y.-Y.; Yan, J.* Liu, B.; Ma, J.-F.* An unprecedented 2D - 3D metal–
organic polyrotaxane framework constructed from cadmium and a ?exible star-like ligand.
Chem. Commun., 2011, 47, 1818–1820.
(9) Wu, H.; Liu, H.-Y.; Yang, J.* Liu, B.; Ma, J.-F.*,Liu, Y.-Y.; Liu, Y.-Y. Series of coordination
polymers based on different carboxylates and a tri(4-imidazolylphenyl) amine ligand:
entangled structures and photoluminescence. Crystal Growth & Design, 2011, 11, 2317–
2324.
(8) Wu, H.; Liu, H.-Y.; Liu, B.; Yang, J.* Liu, Y.-Y.; Ma, J.-F.* Bai, H.-Y. Two unprecedented 3D
metal–organic polyrotaxane frameworks based on a new ?exible tri(imidazole) ligand.
CrystEngComm, 2011, 13, 3402–3407.
(7) Wu, H.; Liu, B.; Yang, J.* Liu, H.-Y.; Ma, J.-F.* A new type of entangled motif: from 2D
polyrotaxane layers to a 3D polythreaded framework. CrystEngComm, 2011, 13, 3661–3664.
(6) Wu, H.; Ma J.-F.* Liu, Y.-Y.; Yang, J.* Liu, H.-Y. Diverse topologies of six
coordination polymers constructed from a tris(4-imidazo lylphenyl)amine ligand
and different carboxylates. CrystEngComm, 2011, 13, 7121-7128.
(5) Wu, H.; Dong, X.-W.; Liu, H.-Y.; Ma, J.-F.* Liu, Y.-Y.; Liu, Y.-Y.; Yang, J.* Construction of a
series of inorganic–organic hybrid coordination polymers based on hexamethylenetetramine and
sulfonate ligands. Inorganica Chimica Acta, 2011, 373, 19–26.
(4) Liu, H.-Y.; Wu, H.; Yang, J.* Liu, Y.-Y.; Liu, B.; Liu, Y.-Y.; Ma, J.-F.*
pH-Dependent assembly of 1D to 3D octamolybdate hybrid materials based on a
new flexible bis-[(pyridyl)-benzimidazole] ligand. Crystal Growth & Design, 2011, 11, 2920–2927.
(3) Liu, H.-Y.; Wu, H.; Yang, J.* Liu, Y.-Y.; Ma, J.-F.* Bai, H.-Y. Solvothermal assembly of a
series of organic-inorganic hybrid materials constructed from keggin
polyoxometalate clusters and copper(I)-organic frameworks. Crystal Growth & Design, 2011, 11,
1786-1797.
(2) Wu, H.; Dong, X.-W.; Ma, J.-F.* Liu, H.-Y. Yang, J.* Bai, H.-Y. In?uence of
anionic sulfonate-containing and nitrogen-containing mixed-ligands on the structures
of silver coordination polymers. Dalton Trans., 2009, 3162–3174.
(1) Wu, H.; Dong, X.-W.; Liu, H.-Y. Ma, J.-F.* Li, S.-L. Yang, J. Liu, Y.-Y. Su, Z.-M. In?uence of
anionic sulfonate-containing co-ligands on the solid structures of silver complexes supported

by 4,4¢-bipyridine bridges. Dalton Trans., 2008, 5331–5341.
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