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Wei Yuan, Zhen Zhang, Xiaoling Cui, Huarong Liu*, Chen Tai, Yuanrui Song, “Fabrication of Hollow Mesoporous CdS@TiO2@Au Microspheres with High Photocatalytic Activity for Hydrogen Evolution from Water under Visible Light”, ACS Sustainable Chemistry & Engineering 2018, 6(11): 13766-13777;
Zhen Zhang, Xiaoling Cui, Wei Yuan, Qihao Yang, Huarong Liu*, Hangxun Xu*, Hai-Long Jiang*, “Encapsulating surface-clean metal nanoparticles inside metal–organic frameworks for enhanced catalysis using a novel γ-ray radiation approach”, Inorganic Chemistry Frontiers 2018, 5(1): 29-38;
Zhen Zhang, Hong Shao, Xiangtian Zhou, Linling Zhao, Huarong Liu*, Xiang Ji, Hewen Liu, “Controllable synthesis of anisotropic silica/polymer composite particles via seeded dispersion polymerization”, Materials Chemistry and Physics 2017, 195: 105-113;
Yufen Yang, Song Jin, Zhen Zhang, Zhenzhen Du, Huarong Liu*, Jia Yang, Hangxun Xu*, Hengxing Ji*, “Nitrogen-Doped Hollow Carbon Nanospheres for High-Performance Li-Ion Batteries”, ACS Applied Materials & Interfaces2017, 9(16): 14180-14186;
Jinde Zhang, Huarong Liu*, “A novel approach to preparing polystyrene/Fe3O4 multihollow microspheres with porous walls”, Colloid and Polymer Science 2016, 294(11): 1755-1763;
Zichao Li, Huarong Liu*, Lai Zeng, Hewen Liu, Yanmei Wang, “The facile synthesis of PMMA polyHIPEs with highly interconnected porous microstructures”, Journal of Materials Science 2016, 51(19): 9005-9018;
李梓超,曾来,刘华蓉*,王延梅,“贯通多孔聚合物微球的制备及其应用”,高分子学报 2015, 12: 1449-1455;
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;
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;
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;
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 Chemistry2014, 52(3): 339-348 (Cover Image);
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;
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;
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;
Ruikun Wang, Huarong Liu*, Fengwei Wang, “Facile Preparation of Raspberry-Like Superhydrophobic Polystyrene Particles via Seeded Dispersion Polymerization”, Langmuir2013, 29: 11440-11448;
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;
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;
Song Yang*, Cong Nie, Huarong Liu*, Huimin Liu, “Facile synthesis and catalytic application of Ag–Fe2O3–carbons nanocomposites”, Materials Letters 2013, 100: 296-298;
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;
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;
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 Chemistry2011, 21(34): 12865-12872;
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;
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 Chemistry2010, 48(22): 5198-5205;
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;
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;
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;
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;
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;
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;
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;
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;
Song Yang, Huarong Liu*, “A Novel Approach to Hollow Superparamagnetic Magnetite/Polystyrene Nanocomposite Microspheres via Interfacial Polymerization”, Journal of Materials Chemistry2006, 16(46): 4480-4487;
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;
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;
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 Chemistry2005, 690(5): 1314-1323.