• 73. Ragavendran Krishna Rao*, Hui Xia*, Xiao Gu, Daniel Sherwood, Bosco Emmanuel and AK Arof,"On the Graphene incorporated LiMn2O4 nano-structures: Possibilities for tuning the preferred orientations", RSC Advances 4 (2014) 60106.

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  • 72. S. Savut Jan, S. Nurgul, Xiaoqin Shi, Hui Xia*, Huan Pang*, "Improvement of electrochemical performance of LiNi0.8Co0.1Mn0.1O2 cathode material by graphene nansheets modification", Electrochimica Acta 149 (2014) 86.

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  • 71. Hui Xia*, Wen Xiong, Chew Keat Lim, Qiaofeng Yao, Yadong Wang*, Jianping Xie*, "Herarchical TiO2-B nanowre@a-Fe2O3 nanothorn core-branch arrays as superior electrodes for lithium-ion microbteries", Nano Research  7 (2014) 1797.

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  • 70. Hui Xia*, Yunhai Wan, Wilfried Assenmacher, Werner Mader, Guoliang Yuan, Li Lu*, "Facile synthesis of chain-like LiCoO2 nanowire arrays as three-dimensional cathode for microbatteries", NPG Asia Materials 6 (2014) e126.

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  • 69. J. Lu, Y. L. Chang, B. H. Song, H. Xia, J. R. Yang, K. S. Lee, L. Lu, "High energy spinel-structured cathode stabilized by layered materilas for advanced lithium-ion batteries", Journal of Power Sources 271 (2014), 604.

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  • 68. Wen Xiong, Qiuying Xia, Hui Xia*, " Three-dimensional self-supported metal oxides as cathodes for microbatteries", Functional Materials letters 7 (2014) 1430003 (Invited Review).

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  • 67. Yang Zhao, Tingting Liu, Hui Xia, Ling Zhang, Jiaxing Jiang, Ming Shen, Jiangfeng Ni, Lijun Gao, " Branch-structured Bi2S3–CNT hybrids with improved lithium storage capability", Journal of Materials Chemistry A 2 (2014), 13854.

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  • 66. L. Li, Y. L. Chang, H. Xia*, B. H. Song, J. R. Yang, K. S. Lee, L. Lu*, "NH4F surface modification of Li-rich layered cathode materials", Solid State Ionics 264 (2014) 36.

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  • 65. Hui Xia, Michael Z. Hu, Ying Shirley Meng, Jianping Xie, Xiangyu Zhao, " Nanostructured Materials for Clean Energy and Environmental Challenges", Journal of Nanomaterials (2014) Editorial.

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  • 64. Yanyan Qian, Yongsheng Fu, Xin Wang, Hui Xia*, " LiNi0.5Mn1.5O4 nanorod clusters as cathode material for high energy and high power lithium-ion batteries", Journal of Nanoscience and Nanotechnology 14 (2014) 7083.

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  • 63. Bo Li, Yongsheng Fu, Hui Xia*, Xin Wang*, " High-performance asymmetric supercapacitors based on MnFe2O4/graphene nanocomposite as anode material", Materials Letters 122 (2014) 193.

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  • 62. Hui Xia*, Bo Li, Li Lu, "1.8 V symmetric supercapacitors developed using nanocrystalline Ru films as electrodes", RSC Advances 4 (2014) 11111.

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  • 61. Dongdong Zhu, Yadong Wang, Guoliang Yuan, Hui Xia*, " High-performance supercapacitor electrodes based on hierarchical Ti@MnO2 nanowire arrays", Chemical Communications 50 (2014) 2876.

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  • 60. Krishna Rao Ragavendran, Hui Xia, Gang Yang, D. Vasudevan, Bosco Emmanuel, D. Sherwoodd and  A. K. Arof, "On the theory of high rate capability of LiMn2O4 with some preferred orientations: insights from the crystal shape algorithm", Physical Chemistry Chemical Physics 16 (2014) 2553.

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  • 59. Hui Xia*, Yunhai Wan, Feng Yan, Li Lu, "Manganese oxide thin films prepared by pulsed laser deposition for thin film microbatteries", Materials Chemistry and Physics 143 (2014) 740.

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  • 58. Binghui Lin, Qing Yin, Hengrun Hu, Fujia Lu, Hui Xia*, "LiMn2O4 nanoparticles anchored on graphene nanosheets as high-performance cathode material for lithium-ion batteries", Journal of Solid State Chemistry 209 (2014), 23.

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  • 57. Hui Xia*, Zhentao Luo, Jianping Xie*, "Nanostructured lithium titanate and lithium titanate/carbon nanocomposite as anode materials for advanced lithium-ion batteries", Nanotechnology Reivews 3 (2014) 161.

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