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刘华蓉副教授

( 2010-11-22 )
 

刘华蓉理学博士

高分子科学与工程系

副教授

Tel: +86-551-63601586 (Lab)

Fax: +86-551-63601592
E-mail: hrliu@ustc.edu.cn

个人简介

刘华蓉,女,19687月出生于湖北沔阳。

1986.09-1990.07就读于华东理工大学高分子材料系高分子材料专业,获得学士学位。

1990.09-1993.07就读于中国科学技术大学材料科学与工程系高分子化学专业,获理学硕士学位。

1995.09-1999.09就读于中国科学技术大学应用化学系高分子化学与物理专业,获得理学博士学位。

2001.04-2003.03葡萄牙Universidade Tecnica de Lisboa高等技术学院化学结构中心做博士后。

2004.03-2004.08又在该校做访问学者。

现为中国科学技术大学高分子科学与工程系副教授。

 

教学工作

主讲:《辐射化学》;《高分子辐射化学》

 

研究方向

1. 纳米复合微球及中空球的制备及其应用
2. 多孔材料(微球)的制备及其应用
3. 各向异性粒子的合成及其应用
4. 特殊微结构材料(包括多层次结构)的可控合成及其性能研究
5. 乳液聚合、细乳液聚合、微乳液聚合、分散聚合及其应用

 

研究兴趣:γ射线为手段,寻找制备新材料的方法以及探索其在生物医药与信息科学中的应用

1. 磁性复合微球的多功能化及其应用

2. 无机粒子的形貌与尺寸的可控合成及其与高分子的复合及应用

3. 对光、电、磁、热、盐和 pH 响应的环境敏感型智能材料的制备与应用研究

4. 各向异性粒子的合成及其稳定乳液的研究

5. 多层次结构材料的合成及其应用

6. 多孔材料的合成及其应用
欢迎对乳液聚合、多孔材料、纳米材料及纳米复合材料的合成及其应用有兴趣的高分子系、化学系、材料科学与工程系、生物系的本科生来实验室做本科论文,同时也欢迎报考本实验室研究生。

 

承担项目

1. 单一小分子乳化剂稳定双重乳液的一步乳化法研究及多级孔微球的构筑与功能化 (国家自然科学基金)
2. 各向异性粒子对乳液的稳定机理及其在多层次结构构建中的应用 (国家自然科学基金)
3. γ射线辐射双重乳液法一步制备多孔纳米复合微球及机理研究 (国家自然科学基金)
4. 智能仿生纳米复合材料 (973项目)
5. 节能领域纳米材料机敏特性的关键科学问题研究 (973项目)

 

近期代表性论文

1. Yufen Yang, Fengwei Wang, Qihao Yang, Yingli Hu, Huan Yan, Yu-Zhen Chen, Huarong Liu*, Guoqing Zhang, Junling Lu, Hai-Long Jiang*, Hangxun Xu*, “Hollow Metal−Organic Framework Nanospheres via Emulsion-Based Interfacial Synthesis and Their Application in Size-Selective Catalysis”, ACS Applied Materials & Interfaces 2014, 6(20): 18163-18171
2. Linling Zhao, Huarong Liu*, Fengwei Wang and Lai Zeng, “Design of yolk–shell Fe3O4@PMAA composite microspheres for adsorption of metal ions and pH-controlled drug delivery”, Journal of Materials Chemistry A 2014, 2(19): 7065-7074.
3. Zichao Li, Huarong Liu*, Lai Zeng, Hewen Liu, Song Yang, Yanmei Wang, “Preparation of High Internal Water-Phase Double Emulsions Stabilized by a Single Anionic Surfactant for Fabricating Interconnecting Porous Polymer Microspheres”, Langmuir 2014, 30(41): 12154-12163.
4. Fengwei Wang, Huarong Liu*, Yang Zhang, Hewen Liu, Xuewu Ge, Xingyuan Zhang, “Synthesis of Snowman-like Polymer-Silica Asymmetric Particles by Combination of Hydrolytic Condensation Process with γ-Ray Radiation Initiated Seeded Emulsion Polymerization”, Journal of Polymer Science Part A-Polymer Chemistry 2014, 52(3):339-348 (Cover Image);
5. Fengwei Wang, Huarong Liu*, Xingyuan Zhang, “Synthesis of worm-like superparamagnetic P(St-AA)@Fe3O4/SiO2 Janus composite particles”, Colloid and Polymer Science 2014, 292(6): 1395-1403.
6. Fengwei Wang, Huarong Liu*, Linling Zhao, Xingyuan Zhang, “Facile Fabrication of Polymer-Inorganic Hybrid Particles with Various Morphologies by Combination of Hydrolytic Condensation Process with Radiation Seeded Emulsion Polymerization”, Colloid and Polymer Science 2014, 292(5): 1171-1179.
7. Song Yang, Lai Zeng, Yipeng Wang, Xuehui Sun, Peijian Sun, Huimin Liu, Cong Nie*, Huarong Liu*, “Facile approach to glycidyl methacrylate-based polyHIPE monoliths with high epoxy-group content”, Colloid and Polymer Science 2014, 292(10): 2563-2570.
8. Ruikun Wang, Huarong Liu*, Fengwei Wang, “Facile Preparation of Raspberry-Like Superhydrophobic Polystyrene Particles via Seeded Dispersion Polymerization”, Langmuir 2013, 29: 11440-11448;
9. Yang Zhang, Huarong Liu*, Fengwei Wang, “Facile fabrication of snowman-like Janus particles with asymmetric fluorescent properties via seeded emulsion polymerization”, Colloid and Polymer Science 2013, 291(12): 2993-3003;
10. Donglin Mao, Tingting Li, Huarong Liu*, Zichao Li, Hong Shao, Min Li, “Preparation of macroporous polyHIPE foams via radiation-induced polymerization at room temperature”, Colloid and Polymer Science 2013, 291(7): 1649-1656;
11. Song Yang*, Cong Nie, Huarong Liu*, Huimin Liu, “Facile synthesis and catalytic application of Ag–Fe2O3–carbons nanocomposites”, Materials Letters 2013-6, 100: 296-298;
12. Xiangtian Zhou, Hong Shao, Huarong Liu*, “Preparation and characterization of film-forming raspberry-like polymer/silica nanocomposites via soap-free emulsion polymerization and the sol–gel process”, Colloid and Polymer Science 2013, 291(5): 1181-1190;
13. Fengwei Wang, Huarong Liu*, Jinde Zhang, Xiangtian Zhou, Xingyuan Zhang, “Synthesis of Snowman-Like Magnetic/Nonmagnetic Nanocomposite Asymmetric Particles Via Seeded Emulsion Polymerization Initiated by γ-Ray Radiation”, Journal of Polymer Science Part A-Polymer Chemistry 2012, 50(22): 4599-4611;
14. Tingting Li, Huarong Liu*, Lai Zeng, Song Yang, Zichao Li, Jinde Zhang, Xiangtian Zhou, “Macroporous magnetic poly(styrene-divinylbenzene) nanocomposites prepared via magnetite nanoparticles-stabilized high internal phase emulsions”, Journal of Materials Chemistry 2011, 21(34): 12865-12872;
15. Tingting Li, Huarong Liu*, Lai Zeng, Weifeng Miao, Ying Wu, “Study of emulsion polymerization stabilized by amphiphilic polymer nanoparticles”, Colloid and Polymer Science 2011, 289(14): 1543-1551;
16. Haofeng Huang, Huarong Liu*, “Synthesis of the raspberry-like PS/PAN particles with anisotropic properties via seeded emulsion polymerization initiated by γ-ray radiation”, Journal of Polymer Science Part A-Polymer Chemistry 2010, 48(22): 5198-5205;
17. Huarong Liu*, Weifeng Miao, Song Yang, Zengming Zhang, Jiafu Chen, “Controlled synthesis of different shapes of Cu2O via γ-irradiation”, Crystal Growth & Design 2009, 9(4): 1733-1740;
18. Song Yang, Huarong Liu*, Haofeng Huang, Zhicheng Zhang, “Fabrication of superparamagnetic magnetite/poly(styrene-co-12-acryloxy-9-octadecenoic acid) nanocomposite microspheres with controllable structure”, Journal of Colloid and Interface Science 2009, 338(2): 584-590;
19. Xin Hu, Huarong Liu*, Xueping Ge, Song Yang, Xuewu Ge, “Preparation of submicron-sized snowman-like polystyrene particles via radiation-induced seeded emulsion polymerization”, Chemistry Letters 2009, 38(8): 854-855;
20. Zeming Xiang, Huarong Liu*, Pengyang Deng*, Meihua Liu, Yuan Yin, Xuewu Ge, “The effect of irradiation on morphology and properties of the PET/HDPE blends with trimethylol propane trimethacrylate (TMPTA)”, Polymer Bulletin 2009, 63(4): 587-597;
21. Song Yang, Huarong Liu*, Zhicheng Zhang, “Design and fabrication of hollow, magnetic and fluorescent CdS–magnetite–poly(styrene-co-methylmethacrylate) microspheres”, New Journal of Chemistry 2009, 33(3): 620-625;
22. 刘华蓉*,胡欣,杨松,苗伟峰,李梓超,张伟,“聚合物互通多孔材料的乳液模板法制备及其多功能研究进展”,化学进展 2009, 21(4): 672-676;
23. Song Yang, Huarong Liu*, Zhicheng Zhang, “Fabrication of novel multihollow superparamagnetic magnetite/polystyrene nanocomposite microspheres via water-in-oil-in-water double emulsions”, Langmuir 2008, 24(18): 10395-10401;
24. Song Yang, Huarong Liu*, Zhicheng Zhang, “A facile route to hollow superparamagnetic magnetite/polystyrene nanocomposite microspheres via inverse miniemulsion polymerization”, Journal of Polymer Science Part A-Polymer Chemistry 2008, 46(12): 3900-3910;
25. Weifeng Miao, Huarong Liu*, Zengming Zhang, Jiafu Chen, “Large-scale growth and shape evolution of micrometer-sized Cu2O cubes with concave planes via γ-irradiation”, Solid State Sciences 2008, 10(10): 1322-1326;
26. Song Yang, Huarong Liu*, “A Novel Approach to Hollow Superparamagnetic Magnetite/Polystyrene Nanocomposite Microspheres via Interfacial Polymerization”, Journal of Materials Chemistry 2006, 16(46): 4480-4487;
27. Huarong Liu*, Jinhua Du, “Synthesis and characterization of MoO2/P(St-co-MMA-co-AA) microspheres via microemulsion by γ-ray radiation”, Solid State Sciences 2006, 8(5): 526-530;
28. Jinhua Du, Huarong Liu*, “Preparation of superparamagnetic γ-Fe2O3 nanoparticles in nonaqueous medium by γ-irradiation”, Journal of Magnetism and Magnetic Materials 2006, 302(1): 263-266;
29. Hua-Rong Liu, Pedro T. Gomes, Sandra I. Costa, M. Teresa Duarte, R. Branquinho, Anabela C. Fernandes, James C. W. Chien, R. P. Singh, Maria M. Marques, “Highly active new α-diimine nickel catalyst for polymerization of α-olefins”, Journal of Organometallic Chemistry 2005, 690(5): 1314-1323.


 
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