(1) Zhifan Zhao, Zexing Xue, Qinqin Xiong(*), Yongqi Zhang, Xiaoshi Hu, Hongzhong Chi, Haiying Qin, Yongjun Yuan, Hualiang Ni, Titanium niobium oxides (TiNb2O7): Design, fabrication and application in energy storage devices, Sustainable Materials and Technologies 2021, 30: e00357.
(2) Zhifan Zhao, Xiaojing Teng, Qinqin Xiong(*), Hongzhong Chi, Yongjun Yuan, Haiying Qin, Zhenguo Ji, Nano-sized FeSe2 decorated rGO as a potential anode material with enhanced lithium-ion storage, Sustainable Materials and Technologies 2021, 29: e00313.
(3) Qinqin Xiong(*), Jingjing Lou, Xiaojing Teng, Xiaoxiao Lu, Shuangyu Liu, Hongzhong Chi, Zhenguo Ji(*), Controllable synthesis of N-C@LiFePO4 nanospheres as advanced cathode of lithium ion batteries, Journal of Alloys and Compounds, 2018, 743: 377-382.
(4) Qinqin Xiong, Jingjing Lou, Yujia Zhou, Shaojun Shi(*), Zhenguo Ji(*), Ultrafast synthesis of Mn0.8Co0.2CO3/graphene composite as anode material by microwave solvothermal strategy with enhanced Li storage properties, Materials Letters, 2018, 210: 267-270.
(5) Qinqin Xiong(*), Cun Zheng, Hongzhong Chi, Zhenguo Ji, Reconstruction of TiO2/MnO2-C nanotube/nanoflake core/shell arrays as high-performance supercapacitor electrodes, Nanotechnology, 2017, 28(5): 055405.
(6) Qinqin Xiong(*), Hongzhong Chi, Jun Zhang, Jiangping Tu, Nitrogen-doped carbon shell on metal oxides core arrays as enhanced anode for lithium ion batteries, Journal of Alloys and Compounds, 2016, 688: 729-735.
(7) Qinqin Xiong(*), Zhenguo Ji, Controllable growth of MoS2/C flower-like microspheres with enhanced electrochemical performance for lithium ion batteries, Journal of Alloys and Compounds, 2016, 673: 215-219.
(8) Qinqin Xiong(*), Zhenguo Ji, Haiying Qin, Biomorphic combustion synthesis of hematite porous structure with enhanced Li storage properties, Materials Letters, 2016, 168: 107-110.
(9) Qinqin Xiong, Jiangping Tu(*), Xiang Ge, Xiuli Wang, Changdong Gu, One-step synthesis of hematite nanospindles from choline chloride/urea deep eutectic solvent with highly powerful storage versus lithium, Journal of Power Sources, 2015, 274: 1-7.
(10) Qinqin Xiong, Jiangping Tu(*), Shaojun Shi, Xiayuan Liu, Xiuli Wang, Changdong Gu, Ascorbic acid-assisted synthesis of Cobalt ferrite (CoFe2O4) hierarchical flower-like microspheres with enhanced lithium storage properties, Journal of Power Sources 2014, 256: 153-159.
(11) Qinqin Xiong, Jiangping Tu(*), Xinhui Xia, Xuyang Zhao, Changdong Gu, Xiuli Wang, Three-Dimensional Hierarchical Fe2O3@NiO core/shell nanorod array on carbon cloth: A new class of anode for high-performance lithium-ion batteries, Nanoscale 2013, 5: 7906-7912.
(12) Qinqin Xiong, Xinhui Xia, Jiangping Tu(*), Jiao Chen, Yongqi Zhang, Ding Zhou, Changdong Gu, Xiuli Wang, Hierarchical Fe2O3@Co3O4 nanowire array anode for high-performance lithium-ion batteries, Journal of Power Sources 2013, 240: 344-350.
(13) Qinqin Xiong, Jiangping Tu(*), Yi Lu, Jiao Chen, Yingxia Yu, Xiuli Wang, Changdong Gu, Three-dimensional porous nano-Ni/Fe3O4 composite film: enhanced: electrochemical performance for lithium-ion batteries, Journal of Materials Chemistry 2012, 22: 18639-18645.
(14) Qinqin Xiong, Yi Lu, Xiuli Wang(*), Changdong Gu, Yanqiang Qiao, Jiangping Tu(*), Improved electrochemical performance of porous Fe3O4/carbon core/shell nanorods as an anode for lithium-ion batteries, Journal of Alloys and Compounds 2012, 36: 219-225.
(15) Qinqin Xiong, Jiangping Tu(*), Yi Lu, Jiao Chen, Yingxia Yu, Yanqiang Qiao, Xiuli Wang, Changdong Gu, Synthesis of hierarchical hollow-structured single-crystalline magnetite (Fe3O4) microspheres: the highly powerful storage versus lithium as an anode for lithium ion batteries, The Journal of Physical Chemistry C 116 (2012) 6495-6502.