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[1] JinKuang Dong, Haiyan Xu*, FengJun Zhang, Chen Chen, Li Liu, GuoTian Wu, Synergistic effect over photocatalytic active Cu2O thin films and their morphological and orientational transformation under visible light irradiation, Appl. Catal. A: Gen., 470, pp294-302, 2014.
[2] HaiYan Xu*, JinKuang Dong, Chen Chen, One-step chemical bath deposition and photocatalytic activity of Cu2O thin films with orientation and size controlled by chelating agent, Mater. Chem. Phys., 143, pp713-719, 2014.
[3] Chen Chen, Haiyan Xu*, Fengjun Zhang, Guotian Wu, Nanostructured morphology control and optical properties of ZnO thin film deposited from chemical solution, Mater. Res. Bull., 52, pp183-188, 2014.
[4] JinKuang Dong, HaiYan Xu*, Chen Chen, Influence of Deposition Temperature on Growth Process and Optical performance of Cu2O Thin Film, Chinese J. Inorg. Chem., 30(3), pp 689-695, 2014.
[5] Li Liu, Haiyan Xu*, Guotian Wu, Effect of pH Value and Dispersant on Dispersibility of Silica Ceramic Slurry, Asian J. Chem., 26(5), pp1467-1469, 2014.
[6] Chen Chen, Haiyan Xu*, Ling Xu, Fengjun Zhang, Jinkuang Dong, Hao Wang, One-pot synthesis of homogeneous core-shell Cu2O films with nanoparticle-composed multishells and their photocatalytic properties, RSC Adv., 3, pp25010-25018, 2013.
[7] YaZhou Wang, Xuan Shao, HaiYan Xu, Ming Xie, SiXu Deng, Hao Wang*, JingBing Liu, Hui Yan, Facile synthesis of porous LiMn2O4 spheres as cathode materials for high-power lithium ion batteries, J. Power Sources, 226(15), pp140-148, 2013.
[8] Hai Yan Xu*, Chen Chen, Ling Xu, Jin Kuang Dong, Direct growth and shape control of Cu2O film via One-Step Chemical Bath Deposition, Thin Solid Film, 527, pp76-80, 2013.
[9] Ling Xu, Hai-Yan Xu*, Chang-Ling Liu, Shi-Biao Wu, Xu-Dong Wang, Xiao-Jie Song, Feng Wang, Photocatalytic properties of cupric oxide nanosheets prepared by a low-temperature soft solution processing, Asian J. Chem., 24(9), pp4098-4100, 2012.
[10] Ling Xu, Haiyan Xu, Shibiao Wu, Xinyi Zhang*, Synergy effect over electrodeposited submicron Cu2O films in photocatalytic degradation of methylene blue, Appl. Surf. Sci., 258(11), pp.4934-4938, 2012.
[11] ZhenZhen Lu, HaiYan Xu, MuDi Xin, KunWei Li and Hao Wang, Induced Growth of (0001)-Oriented Hydroxyapatite Nanorod Arrays on ZnO-Seeded Glass Substrate, J. Phys. Chem. C, 2010, 114 (2), 820-825. ISSN: 1932-7447.
[12] Sugiyama Naota, Xu HaiYan, Onoki Takamasa, et al, Bioactive titanate nanomesh layer on the Ti-based bulk metallic glass by hydrothermal-electrochemical technique, Acta Biomaterialia, 5(4) , (2009), 1367-1373. ISSN: 1742-7061.
[13] HaiYan Xu, Hao Wang, Hui Yan. Preparation and photocatalytic properties of YVO4 nanopowders. J. Hazard. Mater. 144 (1-2) (2007) 82-85. ISSN: 0304-3894.
[14] HaiYan Xu, SiLe Xu, XuDong Li, Hao Wang, Hui Yan. Chemical Bath Deposition of Hausmannite Mn3O4 Thin Films. Appl. Surf. Sci. 252 (2006) 4091-4096. ISSN: 0169-4332.
[15] HaiYan Xu, ShuQuan Wei, ManKang Zhu, Hao Wang, Rui Yu, Hui Yan. Preparation of Shape Controlled SrTiO3 Crystallites by Sol-gel-hydrothermal Method. J. Cryst. Growth 292 (2006) 159-164. ISSN: 0022-0248.
[16] HaiYan Xu, HaoWang, TouNan Jin, Hui Yan. Rapid Fabrication of Luminescent Eu:YVO4 Films by Microwave-assisted Chemical Solution Deposition. Nanotech. 16 (2005) 65-69. ISSN 0957-4484.
[17] HaiYan Xu, Lin Jia, XiLe Xu, XuDong Li, Hao Wang, Hui Yan. Rapid Preparation of Eu:YVO4 Films by Microwave Irradiation Assisted Chemical Bath Deposition. Acta Chim. Sinica 63 (2005) 612-616. ISSN, :0567-7351.
[18] HaiYan Xu, SiLe Xu, Hao Wang, Hui Yan. Characterization of Hausmannite Mn3O4 Thin Films by Chemical Bath Deposition. J. Electrochem. Soc. 152 (2005) C803-C807. ISSN: 0013-4651.
[19] HaiYan Xu, Hao Wang, ZhiQiang Song, YaoWu Wang, Hui Yan, Masahiro Yoshimura. Novel Chemical Method for Synthesis of LiV3O8 Nanorods as Cathode Materials for Lithium Ion Batteries. Electrochimica Acta. 49 (2004) 349-353.
[20] HaiYan Xu, Hao Wang, YongCai Zhang, WenLiang He, ManKang Zhu, Bo Wang, Hui Yan. Hydrothermal Synthesis of Zinc Oxide Powders with Controllable Morphology. Ceram. Int. 30 (2004) 93-97.