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刘志宏
  • 职  称:教授(博士生导师)
  • 毕业学校:兰州大学(博士)
  • 电  话:029-81530805
  • 电子邮箱:liuzh@snnu.edu.cn
  • 研究方向:功能无机固体合成;热化学


个人简介


2003年兰州大学获博士学位;2009-2010年在美国圣母大学访学。从事功能无机固体合成及热化学研究。长期以来对硼酸盐化学进行了多方面的研究,先后开展过新型硼酸盐的合成及其热化学;含硼骨架无机微孔晶体材料的量热学研究; 硼酸盐纳米材料的制备及其阻燃性能,等研究。目前研究工作主要集中在:

(1) 硼酸盐多级孔结构材料构筑及吸附污染物;

(2) 硼酸盐基质稀土掺杂发光材料的制备及其应用;

(3) 过渡金属硼酸盐纳米结构材料的制备及其电催化分解水性能。

近年来,主持国家自然科学基金3项,陕西省自然科学基金2项,横向课题3项。在“Inorg. Chem.”, “Nano Research”, “Cryst. Growth Des.”, “Dalton Trans.”, “CrystEngComm” , “Powder Technology”, “Journal of Chemical Thermodynamics”等刊物发表SCI源期刊学术论文140多篇,授权中国发明专利25项。主持的部分科研成果获2015年陕西高等学校科学技术奖一等奖,2017年陕西省科学技术三等奖。


代表性成果


(1) Xiaojun Zhao, Dan Luo, Yan Wang, and Zhi-Hong Liu*. Reduced graphene oxide-supported CoP nanocrystals confined in porous nitrogen-doped carbon nanowire for highly enhanced lithium/sodium storage and hydrogen evolution reaction, Nano Research, 2019, 12(11): 2872–2880.

(2) Xiao-Jun Zhao, Ya-Huan Jia, Zhi-Hong Liu*. GO-graphene ink-derived hierarchical 3D-graphene architecture supported Fe3O4 nanodots as high-performance electrodes for lithium/sodium storage and supercapacitors. Journal of Colloid and Interface Science, 2019, 536: 463-473.

(3) Rui-Feng Guo, Yan-Qing Ma, Zhi-Hong Liu*. Three hierarchical porous magnesium borate microspheres: a serial preparation strategy, growth mechanism and excellent adsorption behavior for Congo Red, RSC Advances, 2019, 9(35): 20009–20018

(4) Ya-Huan Jia, Zhi-Hong Liu*. Preparation of borate anions intercalated MgAl-LDHs microsphere and its calcinated product with superior adsorption performance for Congo red, Colloids and Surfaces A, 2019, 575: 373–381.

(5) 贾亚欢,耿永洁,刘志宏*. 硼酸钙2CaO·5B2O3·5H2O纳米材料的水热制备及其阻燃性能的热化学策略评价,中国科学:化学, 2019, 49(7):1030-1036.

(6) Yan-Qing Ma, Zhi-Hong Liu*. Excellent adsorption performance for Congo red on hierarchical porous magnesium borate microsphere prepared by a template-free hydrothermal method, J. Taiwan Inst. Chem. Eng., 2018, 86 : 92-100.

(7) Pan Liang, Li-Jun Qiao, Zhi-Hong Liu*. Controlled preparation and photoluminescence properties of Zn6O(OH)(BO3)3:Eu(III) phosphors, Advanced Powder Technology, 2017, 28: 2613–2620.

(8) Yong-Jie Geng, Zhi-Hong Liu*. Preparation and thermodynamic characterization of 2CaO·B2O3·H2O nanomaterials with enhanced flame retardant properties, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2017, 522: 563-568.

(9) Sa-Ying Li, Zhi-Hong Liu*. Co5In(BTC)4[(B2O4(OH)]2:the First MOF Material Constructed by Borate Polyanion and Carboxylate Mixed Ligands, Dalton Transition, 2016, 45: 66–69.

(10) Pan Liang, Zhi-Hong Liu*. Controllable synthesis, growth mechanism and luminescence property of a novel monodisperse microsphere with a hole for Zn8[(BO3)3O2(OH)3]:Eu3+, CrystEngComm, 2016, 18: 1311–1320.

(11) Hui-Hui Zhang, Na Kong, Jie Wang, Zhi-Hong Liu*. Thermodynamic properties of microporous materials for two copper borates, MCuB7O12·H2O (M = Na, K), J. Chem. Thermodynamics, 2015, 89: 164–168.

(12) Jing Liu, Xiu-Ying Ma, Zhi-Hong Liu*. Preparation of Ca[B6O9(OH)2]·3H2O nanomaterials by a phase transformation method and their flame retardant and thermodynamic properties, Powder Technology, 2013, 246 : 26–30.

(13) Hui Yang, Zhi-Hong Liu*. Facile synthesis, shape evolution, and photocatalytic activity of truncated cuprous oxide octahedron microcrystals with hollows, Crystal Growth & Design, 2010, 10(5): 2064-2067.

(14) Zhi- Hong Liu*, Ping Yang, Ping Li. K2[Ga(B5O10)]·4H2O: The first chiral zeolite-like galloborate with large odd 11-ring channels, Inorganic Chemistry, 2007, 46: 2965-2967.

(15) Zhi-Hong Liu*, Lian-Qing Li, Wen-Juan Zhang. Two New Borates Containing the First Examples of Large Isolated Polyborate anions: Chain [B7O9(OH)5]2- and Ring [B14O20(OH)6]4-. Inorganic Chemistry, 2006, 45: 1430-1432.

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