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[1]Y Zhang, L Yang, Y Tian, L Li, J Li, T Qiu, G Zou, H Hou*, X Ji. Honeycomb hard carbon derived from carbon quantum dots as anode material for K-ion batteries Materials Chemistry and Physics, 2019, 303-309
[2]W Hong, P Ge, Y Jiang, L Yang, Y Tian, G Zou, X Cao, H Hou*, X Ji. Yolk–Shell-Structured Bismuth@ N-Doped Carbon Anode for Lithium-Ion Battery with High Volumetric Capacity [J]. ACS Applied Materials & Interfaces, 2019, 11(11): 10829-10840
[3]M Deng, S Li, W Hong, Y Jiang, W Xu, H Shuai, G Zou, Y Hu, H Hou*, W Wang*, X Ji. Octahedral Sb2O3 as high-performance anode for lithium and sodium storage [J]. Materials Chemistry and Physics, 2019, 223: 46-52
[4]P Ge, S Li, H Shuai, W Xu, Y Tian, L Yang, G Zou, H Hou*, X Ji. Engineering 1D chain-like architecture with conducting polymer towards ultra-fast and high-capacity energy storage by reinforced pseudo-capacitance [J]. Nano Energy, 2018, 54: 26-38
[5]Y. Jiang, G. Zou, W. Hong, Y. Zhang, Y. Zhang, H. Shuai, W. Xu, H. Hou*, X. Ji. N-Rich carbon-coated Co3S4 ultrafine nanocrystals derived from ZIF-67 as an advanced anode for sodium-ion batteries [J]. Nanoscale, 2018, 10(39): 18786-18794
[6]G. Zhao, Y. Zhang, L. Yang, Y. Jiang, Y. Zhang, W. Hong, Y. Tian, H. Zhao, J. Hu, L. Zhou, H. Hou*, X. Ji, L. Mai. Nickel Chelate Derived NiS2 Decorated with Bifunctional Carbon: An Efficient Strategy to Promote Sodium Storage Performance [J]. Advanced Functional Materials, 2018, 28(41): 1803690
[7]Y. Zhang, W. Hong, Y. Zhang, W. Xu, Z. Shi, X. Li*, H. Hou*, X. Ji. TiO2 nanosheets anchoring on carbon nanotubes for fast sodium storage [J]. Electrochimica Acta, 2018, 283: 1514-1524
[8]G. Zhao, Y. Zhang, G. Zou, Y. Zhang, W. Hong, Y. Jiang, W. Xu, H. Shuai, H. Hou*, X. Ji. Evaluating the influences of the sulfur content in precursors on the structure and sodium storage performances of carbon materials [J]. Journal of Materials Chemistry A, 2018, 6(24): 11488-11495
[9]G. Zou, H. Hou*, G. Zhao, P. Ge, D. Yin, X. Ji. N-rich carbon coated CoSnO3 derived from in situ construction of a Co-MOF with enhanced sodium storage performance [J]. Journal of Materials Chemistry A, 2018, 6(11): 4839-4847
[10]G. Zhao, G. Zou, H. Hou*, P. Ge, X. Cao, X. Ji. Sulfur-doped carbon employing biomass-activated carbon as a carrier with enhanced sodium storage behavior [J]. Journal of Materials Chemistry A, 2017, 5(46): 24353-24360
[11]G. Zou, H. Hou*, X. Cao, P. Ge, G. Zhao, D. Yin, X. Ji. 3D hollow porous carbon microspheres derived from Mn-MOFs and their electrochemical behavior for sodium storage [J]. Journal of Materials Chemistry A, 2017, 5(45): 23550-23558
[12]H Hou, X Qiu, W Wei, Y Zhang, X Ji*. Carbon Anode Materials for Advanced Sodium-Ion Batteries [J]. Advanced Energy Materials, 2017, 7(24): 1602898
[13]H. Hou, G. Zou, P. Ge, G. Zhao, W. Wei, X. Ji*, L. Huang*. Synergistic effect of cross-linked carbon nanosheet frameworks and Sb on the enhancement of sodium storage performances [J]. New Journal of Chemistry, 2017, 41(22): 13724-13731
[14]Z. Wang, P. Ge, L. Zhu, X. Cao*, L. Xie, H. Hou*, X. Qiu, X. Ji. Hollow-sphere ZnSe wrapped around carbon particles as a cycle-stable and high-rate anode material for reversible Li-ion batteries [J]. New Journal of Chemistry, 2017, 41(14): 6693-6699
[15]G Zhao, G Zou, X Qiu, S Li, T Guo, H Hou*, X Ji. Rose-like N-doped porous carbon for advanced sodium storage [J]. Electrochima Acta, 2017, 240: 24-30
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