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邹华红 

点击数:7333 来源:bat365在线平台 作者: 录入:人员机构 更新时间:2018-11-23

710邹华红 [研究员]

 


联系方式

手机号码:15107732508 

电子邮箱gxnuchem@foxmail.com

办公地址广西桂林育才路15号bat365在线平台


基本介绍

邹华红, 博士生导师,中国化学会高级会员,广西师范大学省部共建药用资源化学与药物分子工程国家重点实验室研究员。研究兴趣是多功能配合物和分子磁体及其应用, 主要围绕多功能导向的单分子磁体及结构修饰, 簇合物的组装过程与机理等方面开展研究工作。先后主持国家自然科学基金2项,广西自然科学基金3项。迄今已在Chem. Eng. J., Adv. Sci.Adv. Funct. Mater., Inorg. Chem. Front., iScienceCommun. Chem., J. Mater. Chem. C.,  Chem. Commun.,  Inorg. Chem., Dalton Trans., Eur. J. Med. Chem., Cryst. Growth. Des.等刊物上发表SCI论文180余篇,引用2700多次,H指数31。以第一发明人获授权发明专利30多项,已转让16项J. Mater. Chem. C., Chem. Commun., Inorg. Chem. Front.,Eur. J. Med. Chem., Inorg. Chem., Dalton Trans.等刊物的审稿人。(https://www.researchgate.net/profile/Hua_Hong_Zou)


研究方向

1. 多功能配合物

2. 稀土簇合物的组装过程与机理

3. 分子磁体


近年来以通讯作者发表的主要论文

[1] Y.L. Li, H.L. Wang, Z.C. Chen, Z.H. Zhu*, Y.C. Liu, R.Y. Yang, F.P. Liang*, H. H. Zou*. Lanthanoid hydrogen-bonded organic frameworks: Enhancement of luminescence by the coordination-promoted antenna effect and applications in heavy-metal ion sensing and sterilization. Chem. Eng. J., 2023, 451, 138880.

[2] B.F. Long, S. Yu, Z. H. Zhu,* Y.L. Li, F.P. Liang*, H. H. Zou*. Coordination site manipulation of the annular growth mechanism to assemble chiral lanthanide clusters with different shapes and magnetic properties. Inorg. Chem. Front., 2022, 9, 5950–5959.

[3] Y.L. Li, H.L. Wang, Z.H. Zhu,* F.P. Liang*, H. H. Zou*. Giant Crown-Shaped Dy34 Nanocluster with High Acid−Base Stability Assembled by an out-to-in Growth Mechanism. Inorg. Chem., 2022, 61, 10101−10107.

[4] J.M. Peng, H.L. Wang, Z.H. Zhu,* J. Bai, F.P. Liang*, H. H. Zou*. Series of the Largest Dish-Shaped Dysprosium Nanoclusters Formed by In Situ Reactions.  Inorg. Chem., 2022, 61, 6094−6100.

[5] H.L. Wang, Y.L. Li, Z.H. Zhu,* X.L. Lu, F.P. Liang*, H. H. Zou*. Anion-Manipulated Hydrolysis Process Assembles of Giant High-Nucleation Lanthanide-Oxo Cluster. Inorg. Chem., 2022, 61, 20169−20176.

[6] Y.L. Li, X.L. Lu, Z.H. Zhu,* H.L. Wang, F.P. Liang*, H. H. Zou*. Manipulating Solvothermal Coordination-Catalyzed In Situ Tandem Reactions to Construct Dysprosium-Based Complexes with Different Shapes and Zero-Field SMM Behaviors. Inorg. Chem., 2022, 61, 20513−20523.

[7] Z.H. Zhu, C.J. Bi, H. H. Zou, G.X. Feng,* S.P. Xu,* B.Z. Tang*. Smart Tetraphenylethene-Based Luminescent Metal–Organic Frameworks with Amide-Assisted Thermofluorochromics and Piezofluorochromics. Adv. Sci., 2022, 9, 2200850.

[8] Y.L. Li, H.L. Wang, Z.H. Zhu,* X.-L. Lu, F.P. Liang*, H. H. Zou*. Alkali metal-linked triangular building blocks assemble a high-nucleation lanthanoid cluster based on single-molecule magnets. iScience, 2022, 25, 10528.

[9] X.Y. Meng, X. Liu, L. Zhang, J. Zhou,* H. H. Zou,* J. Zhang, D. Xiang, X. Zou. A series of new lanthanide benzoates: Syntheses, crystal structures, and luminescent properties. Dyes and Pigments, 2022, 201, 110182.

[10] Y.L. Li, H.L. Wang, Z.H. Zhu*, J. Li, H. H. Zou*, J.M. Peng, F.P. Liang*. Truncation reaction regulates the out-to-in growth mechanism to decrypt the formation of brucite-like dysprosium clusters. Dalton Trans., 2022, 51, 197–202.

[11] Z.H. Zhu, Z.Q. Ni, H. H. Zou, G.X. Feng,* B.Z. Tang*. Smart Metal–Organic Frameworks with Reversible Luminescence/Magnetic Switch Behavior for HCl Vapor Detection. Adv. Funct. Mater., 2021, 2106925.

[12] Y.L. Li, H.L. Wang, Z.H. Zhu*, J. Li, H. H. Zou*, F.P. Liang*. A Series of High-Nuclear Gadolinium Cluster Aggregates with a Magnetocaloric Effect Constructed through Two-Component Manipulation. Inorg. Chem., 2021, 60, 16794−16802.

[13] Y. Xu, X. Liu, J. Zhou*, H. H. Zou*. Two Organic Hybrid Manganese Selenoarsenates: The Discovery of One-Dimensional Low-Valent Selenoarsenate(II). Inorg. Chem., 2021, 60, 19226−19232.

[14] Anion and Solvent Manipulated Out-to-In Growth Mechanism to Assemble a Series of Different Dysprosium Clusters. X.-L. Lu, H.-L. Wang, Z.H. Zhu,* T. Liu, H. H. Zou*, F.P. Liang*. Bull. Chem. Soc. Jpn., 2021, 94, 2313–2318.

[15] J.M. Peng, Q.X. Yu, Z.H. Zhu,* Z.Y. Liu, X.L. Lu, H. H. Zou*, F.P. Liang*. Two Diamond-Shaped Dy4 Complexes Caused by Different Topological Connections: Structure and Magnetism. Cryst. Growth Des., 2021, 21, 6056−6063.

[16] L. Huang, C. Ouyang, X. Liu, J. Zhou,* H. H. Zou*, H. Yuan,* D. Wen. A series of organic hybrid polyoxovanadate clusters incorporating tris(hydroxymethyl)methane Derivatives. Dalton Trans., 2021, 50, 15224–15232.

[17] J.M. Peng, H.L. Wang, Z.H. Zhu*, Z.Y. Liu, H. H. Zou*, F.P. Liang*. Substituents lead to differences in the formation of a series of dysprosium hydrogen-bonded organic frameworks with high stability and acid stimulus–response luminescence properties. J. Mater. Chem. C., 2021, 9, 9319–9330.

[18] H.L. Wang, T. Liu, Z.H. Zhu, J.M. Peng, H. H. Zou*, F.P. Liang*. A series of dysprosium clusters assembled by a substitution effect-driven out-to-in growth mechanism. Inorg. Chem. Front., 2021, 8, 2136−2143.

[19] H.L. Wang, T. Liu, Z.H. Zhu*, J.M. Peng, H. H. Zou*, F.P. Liang*. pH manipulates the assembly of a series of dysprosium clusters with subtle differences. Inorg. Chem. Front., 2021, 8, 3134−3140.

[20] L. Huang, X. Liu, J. Zhou*, H. H. Zou*, D. Wen. One octasubstituted trisalkoxo tetradecavanadate cluster. Inorg. Chem., 2021, 60, 14−18.

[21] Y. Chen, X. Liu, J. Zhou*, H.H. Zou*, B. Xiang. One-dimensional vanadium(III) chalcogenidostannates incorporating [V(tepa)]3+ complexes as bridging groups. Inorg. Chem., 2021, 60, 2127−2132.

[22] Z.H. Zhu*, J.M. Peng, H.L. Wang, H. H. Zou*, F.P. Liang*. Assembly mechanism and heavy metal ion sensing of cage-shaped lanthanide nanoclusters. Cell Rep. Phy. Sci., 2020, 1, 100165.

[23] Z.R. Luo, H.L. Wang, Z.H. Zhu*, T. Liu, X.F. Ma, H.F. Wang, H. H. Zou*, F.P. Liang*. Assembly of Dy60 and Dy30 cage-shaped nanoclusters. Commun. Chem., 2020, 3, 30,

[24] T. Meng, Q.P. Qin*, Z.L. Chen, H. H. Zou*, K. Wang, F.P. Liang*. Cyclometalated Ir(III)-8-oxychinolin complexes acting as red-colored probes for specific mitochondrial imaging and anticancer drugs. Eur. J. Med. Chem., 2020, 192, 112192.

[25] Q.P. Qin*, Z.Z. Wei, Z.F. Wang, X.L. Huang, M.X. Tan, H. H. Zou*, H. Liang*. Imaging and therapeutic applications of Zn(II)-cryptolepine–curcumin molecular probes in cell apoptosis detection and photodynamic therapy. Chem. Commun., 2020, 56, 3999−4002.

[26] Z.H. Zhu, H.F. Wang, S. Yu, H. H. Zou*, H.L. Wang, B. Yin*, F.P. Liang*. Substitution effects regulate the formation of butterfly-shaped tetranuclear Dy(III) cluster and Dy-based hydrogen-bonded helix frameworks: structure and magnetic properties. Inorg. Chem., 2020, 59, 11640−11650.

[27] H.F. Wang, Z.H. Zhu*, J.M. Peng, B. Yin*, H.L. Wang, H. H. Zou,* F.P. Liang*. Multifunctional binuclear Ln(III) complexes obtained via in situ tandem reactions: multiple photoresponses to volatile organic solvents and anticounterfeiting and magnetic properties. Inorg. Chem., 2020, 59, 13774−13783.

[28] Y. Fu, J. Zhou*, H.-H. Zou*, F. A. Almeida Paz, X. Liu, L. Fu. Unique two-dimensional indium telluride templated by a rare wheel-shaped heterobimetallic Mn/In cluster. Inorg. Chem., 2020, 59, 5818−5822.

[29] T. Meng, T. Liu, Q.P. Qin*, Z.L. Chen, H. H. Zou*, K. Wang, F.P. Liang*. Mitochondria-localizing dicarbohydrazide Ln complexes and their mechanism of in vitro anticancer activity. Dalton Trans., 2020, 49, 4404−4415.

[30] Z.H. Zhu, H.L. Wang, H.-H. Zou*, F.P. Liang*. Metal hydrogen-bonded organic frameworks: structure and performance. Dalton Trans., 2020, 49, 10708−10723.

[31] H. L. Wang, Z.H. Zhu*, X.F. Ma, H. H. Zou*, F.P. Liang*. Metal-helix frameworks formed by µ3-NO3- with different orientations and connected to a heterometallic Cu(II)10Dy(III)2 folded cluster. Chem. −Eur. J., 2019, 25, 10813−10817.

[32] H.H. Zou, T. Meng, Q. Chen, Y.Q. Zhang*, H.L. Wang, B. Li, K. Wang, Z.L. Chen, P.F. Liang*. Bifunctional mononuclear dysprosium complexes: single-ion magnet behaviors and antitumor activities. Inorg. Chem., 2019, 58, 2286−2298.

[33] H.L. Wang, X.F. Ma, J.M. Peng, Z.H. Zhu*, B. Li, H. H. Zou*, F.P. Liang*. Tracking the stepwise formation of the dysprosium cluster (Dy10) with multiple relaxation behavior. Inorg. Chem., 2019, 58, 9169−9174.

[34] H.L. Wang, X.F. Ma, Z.H. Zhu, Y.Q. Zhang*, H. H. Zou*, F.P. Liang*. A series of dysprosium-based hydrogen-bonded organic frameworks (Dy–HOFs): thermally triggered off→on conversion of a single-ion magnet. Inorg. Chem. Front., 2019, 6, 2906−2913.

[35] H.L. Wang, J.M. Peng, Z.H. Zhu, K.Q. Mo, X.F. Ma, B. Li, H.-H. Zou*, F.P. Liang*. Step-by-step and competitive assembly of two Dy(III) single-molecule magnets with their performance tuned by Schiff base ligands. Cryst. Growth & Des., 2019, 19, 5369−5375.

[36] X.F. Ma, H.L. Wang, Z.H. Zhu*, B. Li, K.Q. Mo, H. H. Zou*, F.P. Liang. Formation of nanocluster {Dy12} containing Dy-exclusive vertex-sharing [Dy4(µ3-OH)4] cubanes via simultaneous multitemplate guided and step-by-step assembly. Dalton Trans., 2019, 48, 11338−11344.

[37] T. Meng, Q.P. Qin*, Z.L. Chen, H. H. Zou*, K. Wang, F.P. Liang*. High in vitro and in vivo antitumor activities of Ln(III) complexes with mixed 5,7-dichloro-2-methyl-8-quinolinol and 4,4'-dimethyl-2,2'-bipyridyl chelating ligands. Eur. J. Med. Chem., 2019, 169, 103−110.

[38] Z.H. Zhu, X.F. Ma, H.L. Wang, H. H. Zou*, K.Q. Mo, Y.Q. Zhang*, Q.Z. Yang, B. Li, F.P. Liang*. A triangular Dy3 single-molecule toroic with high inversion energy barrier: magnetic properties and multiple-step assembly mechanism. Inorg. Chem. Front., 2018, 5, 3155−3162.

[39] S.M. Tang, J. Zhou*, H. H. Zou*, X. Liu, L. Zhang. A series of lanthanide selenidogermanates: The first coexistence of three types of selenidogermanate units in the same architecture. Inorg. Chem., 2018, 57, 1242−1250.

[40] J. Zhou*, H. Xiao, H. H. Zou*, X. Liu. A new type of three-dimensional hybrid polymeric haloplumbate based on rare high-nuclear heterometallic clusters. Inorg. Chem., 2018, 57, 12860−12868.

科研项目

1. 主持国家自然科学基金项目1项;

2. 主持广西自然科学基金项目1项。


获奖情况

1. 含羧基的多官能团配体功能配合物的构筑及其性能研究,2013年广西自然科学一等奖(5/6)

2. 簇基配()合物分子基材料的定向构筑及其磁、光性能与构效关系研究;2011年广西自然科学一等奖(5/6)

     本课题组每年招博士生1名、硕士研究生2-3名(接受第一志愿或调剂)及对科研感兴趣的本科生诺干名。

                     欢迎化学专业相关的博士后及优秀硕士生科研助理加入本课题组。