[1] ARMAND M,TARASCON J M. Building better batteries [J]. Nature,2008,451(7179):652-657. [2] ZHANG Q F,UCHAKER E,CANDELARIA S L,et al. Nanomaterials for energy conversion and storage [J]. Chemical Society Reviews,2013,42(7):3127-3171. [3] LI H J,SU Q M,KANG J W,et al. Porous SnO2 hollow microspheres as anodes for high-performance lithium ion battery [J]. Materials Letters,2018,217:276-280. [4] 张彬彬,李雨竹,杨成,等. 碳包覆的蛋黄壳结构氧化锰锂离子电池负极材料[J]. 科学通报,2019,64(32):3371-3377. [5] YU X Y,WU H B,YU L,et al. Rutile TiO2 submicroboxes with superior lithium storage properties [J]. Angewandte Chemie (International Edition),2015,54(13):4001-4004. [6] XIANG Y Y, ZHU W Y, QIU W J, et al. SnO2 functionalized polyethylene separator with enhanced thermal stability for high performance lithium ion battery [J]. Chemistry Select,2018,3(3):911-916. [7] SHEN E H,WANG C L, WANG E B, et al. PEG- assisted synthesis of SnO2 nanoparticles [J]. Materials Letters,2004,58(29):3761-3764. [8] PARK M S,WANG G X,KANG Y M,et al. Preparation and electrochemical properties of SnO2 nanowires for application in lithium-ion batteries [J]. Angewandte Chemie(International Edition),2007,46(5):750-753. [9] LIU Y J,LI Q,MA K X,et al. Graphene oxide wrapped CuV2O6 nanobelts as high-capacity and long-life cathode materials of aqueous zinc-ion batteries [J]. ACS Nano,2019,13(10):12081-12089. [10] DAI Z R,PAN Z W,WANG Z L. Novel nanostructures of functional oxides synthesized by thermal evaporation [J]. Advanced Functional Materials,2003,13(1):9-24. [11] WANG C, ZHOU Y, GE M Y, et al. Large-scale synthesis of SnO2 nanosheets with high lithium storage capacity [J]. Journal of the American Chemical Society,2009,132(1):46-47. [12] WANG H,LIANG Q Q,WANG W J,et al. Preparation of flower-like SnO2 nanostructures and their applications in gas-sensing and lithium storage [J]. Crystal Growth & Design,2011,11(7):2942-2947. [13] ZHAN L, ZHOU X S, LUO J, et al. Binder-free multilayered SnO2/graphene on Ni foam as a high- performance lithium ion batteries anode [J]. Ceramics International,2019,45(6):6931-6936. [14] WU P, DU N, ZHANG H, et al. CNTs@SnO2@C coaxial nanocables with highly reversible lithium storage[J]. The Journal of Physical Chemistry C,2010,114(51):22535-22538. [15] CHEN J S, CHEAH Y L, CHEN Y T, et al. SnO2 nanoparticles with controlled carbon nanocoating as high-capacity anode materials for lithium-ion batteries [J]. The Journal of Physical Chemistry C,2009,113(47):20504-20508. [16] ZHANG M,UCHAKER E,HU S,et al. CoO-carbon nanofiber networks prepared by electrospinning as binder-free anode materials for lithium-ion batteries with enhanced properties[J]. Nanoscale,2013,5(24):12342-12349. [17] ZHOU X S,DAI Z H,LIU S H,et al. Ultra-uniform SnOx/carbon nanohybrids toward advanced lithium-ion battery anodes [J]. Advanced Materials,2014,26(23):3943-3949. [18] WANG R H, XU C H, SUN J, et al. Solvothermal- induced 3D macroscopic SnO2/nitrogen-doped graphene aerogels for high capacity and long-life lithium storage [J]. ACS Applied Materials & Interfaces,2014,6(5):3427-3436. [19] 王传新,谢海鸥,汪建华,等. 镍纤维管改善锂硫电池性能[J]. 武汉工程大学学报,2013,35(3):38-42. [20] 谭毅,薛冰. 锂离子电池负极材料钛酸锂的研究进展[J]. 无机材料学报,2018,33(5):475-482.
[1]池汝安,陈志伟,路莎莎.负极材料四氧化三钴的液相沉淀法制备及其性能[J].武汉工程大学学报,2014,(04):7.[doi:103969/jissn16742869201404002]
CHI Ru an,CHEN Zhi wei,LU Sha sha.Preparation and characterization of cobalt oxide anode materials synthesized by liquid precipitation method[J].Journal of Wuhan Institute of Technology,2014,(03):7.[doi:103969/jissn16742869201404002]
[2]袁华,何云蔚,艾常春.钛酸锂作为锂离子电池负极材料的改性进展[J].武汉工程大学学报,2014,(08):20.[doi:103969/jissn16742869201408004]
YUAN Hua,HE Yun wei,AI Chang chun.Progress of modification of lithium titanate as anode material for lithiumion battery[J].Journal of Wuhan Institute of Technology,2014,(03):20.[doi:103969/jissn16742869201408004]
[3]潘冰冰,胡 朴,赵周桥,等.Li/Ti摩尔比对Li4Ti5O12负极材料组成、结构和电化学性能的影响[J].武汉工程大学学报,2021,43(03):283.[doi:10.19843/j.cnki.CN42-1779/TQ.202011008]
PAN Bingbing,HU Pu,ZHAO Zhouqiao,et al.Effects of Li/Ti Molar Ratio on Composition,Structure and Electrochemical Properties of Li4Ti5O12 Anode Material[J].Journal of Wuhan Institute of Technology,2021,43(03):283.[doi:10.19843/j.cnki.CN42-1779/TQ.202011008]
[4]赵周桥,胡 朴,潘冰冰,等.Na+掺杂对LiNi1/3Co1/3Mn1/3O2结构和电化学性质的影响[J].武汉工程大学学报,2021,43(04):402.[doi:10.19843/j.cnki.CN42-1779/TQ.202011016]
ZHAO Zhouqiao,HU Pu,PAN Bingbing,et al.Effects of Sodium Ion Doping on Structure and Electrochemical Properties of LiNi1/3Co1/3Mn1/3O2[J].Journal of Wuhan Institute of Technology,2021,43(03):402.[doi:10.19843/j.cnki.CN42-1779/TQ.202011016]
[5]乔荣志,罗晓刚*.聚偏氟乙烯及其共聚物用作高润湿性锂离子电池隔膜的研究进展[J].武汉工程大学学报,2023,45(03):243.[doi:10.19843/j.cnki.CN42-1779/TQ.202205013]
QIAO Rongzhi,LUO Xiaogang*.Advances in Polyvinylidene Fluoride and Its Copolymers Used asHigh Wettable Separator for Lithium-Ion Battery[J].Journal of Wuhan Institute of Technology,2023,45(03):243.[doi:10.19843/j.cnki.CN42-1779/TQ.202205013]
[6]李 剑,杨 凯,江秋月,等.聚丙烯酸黏结剂的分子量对氧化亚硅负极性能的影响[J].武汉工程大学学报,2023,45(06):635.[doi:10.19843/j.cnki.CN42-1779/TQ.202212004]
LI Jian,YANG Kai,JIANG Qiuyue,et al.Effect of Molecular Weight of Polyacrylic Acid Binders onProperties of Silicon Suboxide Anode[J].Journal of Wuhan Institute of Technology,2023,45(03):635.[doi:10.19843/j.cnki.CN42-1779/TQ.202212004]
[7]邓淏天,王学华*,石胜伟,等.锌溴电池电解液及电极材料研究进展[J].武汉工程大学学报,2024,46(01):27.[doi:10.19843/j.cnki.CN42-1779/TQ.202304009]
DENG Haotian,WANG Xuehua*,SHI Shengwei,et al.Research progress in electrolyte and electrode materials forzinc-bromine batteries[J].Journal of Wuhan Institute of Technology,2024,46(03):27.[doi:10.19843/j.cnki.CN42-1779/TQ.202304009]