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张冬
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[31] D. Zhang, H. M. Li, H. L. Qiu, G. Chen, H. J. Yue*, A. H. Liu, “Freeze-drying Synthesis and Characterization of Li2FeSiO4/C Cathode Materials for Lithium Ion Batteries”, Chemical Journal of Chinese Universities, 2017, 8, 1436-1441.
[32] T. Zhang, H. L. Qiu, M. Zhang, Z. B. Fang, X. S. Zhao, L. Wang, G. Chen, Y. J. Wei, H. J. Yue, C. Z. Wang*, D. Zhang*, “A unique 2D-on-3D architecture developed from ZnMn2O4 and CMK-3 with excellent performance for lithium ion batteries”, Carbon, 2017, 123, 717-725.
[33] Y. Lou, W. J. Zhao, C. G. Li, H. Huang, T. Y. Bai, C. L. Chen, C. Liang, Z. Shi*, D. Zhang, X. B. Chen*, S. H. Feng, “Application of Cu3InSnSe5 Heteronanostructures as Counter Electrodes for Dye-Sensitized Solar Cells”, ACS Appl. Mater. Interfaces, 2017, 9(21), 18046-18053.
[34] H. L. Qiu, H. J. Yue, X. Wang, T. Zhang, M. Zhang, Z. B. Fang, X. S. Zhao, G. Chen, Y. J. Wei, C. Z. Wang*, D. Zhang*, “Titanium-doped Li2FeSiO4/C composite as the cathode material forlithium-ion batteries with excellent rate capability and long cycle life”, Journal of Alloys and Compounds, 2017, 725, 860-868.
[35] J. Li, L. Wang, D. Zhang, Y. Qu, G. M. Wang, G. Tian, A. H. Liu, H. J. Yue*, S. H. Feng, “Reduced graphene oxide modified mesoporous FeNi alloy/carbon microspheres for enhanced broadband electromagnetic wave absorbers”, Materials Chemistry Frontiers, 2017, 1, 1786-1794.
[36] T. Zhang, H. Liang, C. D. Xie, H. L. Qiu, Z. B. Fang, L. Wang, H. J. Yue, G. Chen, Y. J. Wei, C. Z. Wang*, D. Zhang*, “Morphology-controllable synthesis of spinel zinc manganate with highly reversible capability for lithium ion battery”, Chemical Engineering Journal, 2017, 326, 820-830.
[37] Y. Qu, D. Zhang*, X. Wang, H. L. Qiu, T. Zhang, M. Zhang, G. Tian, H. J. Yue*, S. H. Feng, G. Chen, “Porous ZnFe2O4 nanospheres as anode materials for Li-ion battery”, Journal of Alloys and Compounds, 2017, 721, 697-704.
[38] X. X. Liu, T. Zhang, Y. Qu, G. Tian, H. J. Yue*, D. Zhang*, “Carbonized polydopamine coated single-crystalline NiFe2O4 nanooctahedrons with enhanced electrochemical performance as anode materials in a lithium ion battery”, Electrochimica Acta, 2017, 231, 27-35.
[39] T. Zhang, H. J. Yue, H. L. Qiu, Y. J. Wei, C. Z. Wang, G. Chen, D. Zhang*, “Nano-particles assembled porous core-shell ZnMn2O4 microspheres with superb performance for lithium batteries”, Nanotechnology, 2017, 28, 105403/1-105403/11.
[40] J. J. Dong, T. Zhang, D. Zhang, W. W. Zhang, H. F. Zhang, R. Liu, M. G. Yao*, B. B. Liu, “Remarkable cycle-activated capacityincreasing in onion-like carbon nanospheresas lithium battery anode material”, Nanotechnology, 2017, 28, 035704/1-105403/10.
[41] S. Gao, D. Zhang, K. Zhu, J. A. Tang, Z. M. Gao, Y. J. Wei, G. Chen, Y. Gao*, “Flexible V2O3/carbon nano-felts as free-standing electrode for high”, Journal of Alloys and Compounds, 2017, 702, 13-19.
[42] H. L. Qiu, H. J. Yue, T. Zhang, T. T. Li, C. Z. Wang, G. Chen, Y. J. Wei, D. Zhang*, “Enhanced electrochemical performance of Li2FeSiO4/C cathode materials by surface modification with AlPO4 nanosheets”, Eletrochimica Acta, 2016, 222, 1870-1877.
[43] T. Zhang, Y. Gao, H. J. Yue, H. L. Qiu, Z. D. Guo, Y. J. Wei, C. Z. Wang, Gang Chen, D. Zhang*, “Convenient and high-yielding strategy for preparing nano-ZnMn2O4 as anode material in lithium-ion batteries”, Eletrochimica Acta, 2016, 198, 84-90.
[44] Z. D. Guo, D. Zhang*, H. L. Qiu, Y. M. Ju, T. Zhang, L. J. Zhang, Y. Meng, Y. J. Wei*, G. Chen, “Improved electrochemical properties of tavorite LiFeSO4F by surface coating with hydrophilic polydopamine via a self-polymerization process”, RSC Adv., 2016, 6(8), 6523-6527.
[45] H. L. Qiu, H. J. Yue, T. Zhang, Y. M. Ju, Y. Q. Zhang, Z. D. Guo, C. Z. Wang, G. Chen, Y. J. Wei, D. Zhang*, “Enhanced Electrochemical Performance of Li2FeSiO4/C Positive Electrodes for Lithium-Ion Batteries via Yttrium Doping”, Electrochimica Acta, 2016, 188, 636-644.
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