Energy Storage Science and Technology ›› 2018, Vol. 7 ›› Issue (3): 539-553.doi: 10.12028/j.issn.2095-4239.2018.0067
NIE Kaihui, GENG Zhen, WANG Qiyu, YUE Jinming, YU Xiqian, LI Hong
Received:
2018-04-02
Revised:
2018-04-14
Online:
2018-05-01
Published:
2018-05-01
CLC Number:
NIE Kaihui, GENG Zhen, WANG Qiyu, YUE Jinming, YU Xiqian, LI Hong. Experimental measurement and analysis methods of cyclic voltammetry for lithium batteries[J]. Energy Storage Science and Technology, 2018, 7(3): 539-553.
[1] BARD A J, FAULKNER L R. Electrochemical methods:Fundamentals and applications[M]. New York:Wiley, 1980. [2] PARk J K. Principles and applications of lithium secondary batteries[M]. New York:John Wiley & Sons, 2012. [3] FUJISHIMA A. Electrochemical method:Various chemical sensors[J]. Bulletin of the Society of Sea Water Science Japan, 1989, 43:200-207. [4] 蒲国刚,袁倬斌,吴守国. 电分析化学[M]. 合肥:中国科学技术大学出版社, 1993. PU G G, YUAN Z B, WU S G. Electrochemical analysis[M]. Hefei:Science and Technology of China Press, 1993. [5] SAUVAGE F, BAUDRIN E, MORCRETTE M, et al. Pulsed laser deposition and electrochemical properties of LiFePO4 thin films[J]. Electrochemical and Solid State Letters, 2004, 7(1):A15-A18. [6] XU Q, ZHAO T S, WEI L, et al. Electrochemical characteristics and transport properties of Fe(Ⅱ)/Fe(Ⅲ) redox couple in a non-aqueous reline deep eutectic solvent[J]. Electrochimica Acta, 2015, 154:462-467. [7] WANG S P, LIU Q L, YU J X, et al. Anisotropic expansion and high rate discharge performance of V-doped MnO2 for Li/MnO2 primary battery[J]. International Journal of Electrochemical Science, 2012, 7(2):1242-1250. [8] 王其钰, 褚赓, 张杰男, 等. 锂离子扣式电池的组装, 充放电测试和数据分析[J]. 储能科学与技术, 2018, 7(2):327-344. WANG Q Y, CHU G, ZHANG J N, et al. The assembly, charge-discharge performance measurement and data analysis of lithium-ion button cell[J].Energy Storage Science and Technology, 2018, 7(2):327-344. [9] VASSILIEV S Y, LEVIN E E, NIKITINA V A. Kinetic analysis of lithium intercalating systems:Cyclic voltammetry[J]. Electrochimica Acta, 2016, 190:1087-1099. [10] DOLLÉ M l, ORSINI F o, GOZDZ A S, et al. Development of reliable three-electrode impedance measurements in plastic Li-ion batteries[J]. Journal of The Electrochemical Society, 2001, 148(8):A851. [11] LI H, HUANG X J, CHEN L Q, Anodes based on oxide materials for lithium rechargeable batteries[J]. Solid State Ionics, 1999, 123(1-4):189-197. [12] LI H, ZHU G Y, HUANG X J, et al. Synthesis and electrochemical performance of dendrite-like nanosized Sn Sb alloy prepared by co-precipitation in alcohol solution at low temperature[J]. Journal of Materials Chemistry, 2000, 10(3):693-696. [13] HANSEN S, QUIROGA-GONZALEZ E, CARSTENSEN J, et al. Size-dependent cyclic voltammetry study of silicon microwire anodes for lithium ion batteries[J]. Electrochimica Acta, 2016, 217:283-291. [14] OPITZ M, YUE J P, WALLAUER J, et al. Mechanisms of charge storage in nanoparticulate TiO2 and Li4Ti5O12 anodes:New insights from scan rate-dependent cyclic voltammetry[J]. Electrochimica Acta, 2015, 168:125-132. [15] PELED E, GORENSHTEIN A, SEGAL M, et al. Rechargeable lithium sulfur battery[J]. Journal of Power Sources, 1989, 26(3/4):269-271. [16] JEON B H, YEON J H, KIM K M, et al. Preparation and electrochemical properties of lithium-sulfur polymer batteries[J]. Journal of Power Sources, 2002, 109(1):89-97. [17] WU F, CHEN J Z, CHEN R J, et al. Sulfur/polythiophene with a core/shell structure:Synthesis and electrochemical properties of the cathode for rechargeable lithium batteries[J]. Journal of Physical Chemistry C, 2011, 115(13):6057-6063. [18] YIN Y X, XIN S, GUO Y G, et al. Lithium-sulfur batteries:Electrochemistry, materials, and prospects[J]. Angewandte Chemie-International Edition, 2013, 52(50):13186-13200. [19] WAN D Y, FAN Z Y, DONG Y X, et al. Effect of metal (Mn, Ti) doping on NCA cathode materials for lithium ion batteries[J]. Journal of Nanomaterials, 2018. [20] ROUGIER A, STRIEBEL K A, WEN S J, et al. Cyclic voltammetry of pulsed laser deposited LixMn2O4 thin films[J]. Journal of the Electrochemical Society, 1998, 145(9):2975-2980. [21] REDDY M V, PECQUENARD B, VINATIER P, et al. Cyclic voltammetry and galvanostatic cycling characteristics of LiNiVO4 thin films during lithium insertion and re/de-insertion[J]. Electrochemistry Communications, 2007, 9(3):409-415. [22] HASHAMBHOY A M, WHITACRE J F. Li Diffusivity and phase change in LiFe0.5Mn0.5PO4:A comparative study using galvanostatic intermittent titration and cyclic voltammetry[J]. Journal of the Electrochemical Society, 2011, 158(4):A390-A395. [23] XIE J, IMANISHI N, HIRANO A, et al. Kinetics investigation of a preferential (104) plane oriented LiCoO2 thin film prepared by RF magnetron sputtering[J]. Solid State Ionics, 2007, 178(19/20):1218-1224. [24] YU D Y W, FIETZEK C, WEYDANZ W, et al. Study of LiFePO4 by cyclic voltammetry[J]. Journal of the Electrochemical Society, 2007, 154(4):A253-A257. [25] 凌世刚, 吴娇杨, 张舒, 等. 锂离子电池基础科学问题(Ⅷ)-电化学测量方法[J]. 储能科学与技术, 2015, 4(1):83-103 LING S G, WU J Y, ZHANG S, et al. Fundamental scientific aspects of lithium ion batteries(Ⅷ)-Electrochemical measurements[J]. Energy Storage Science and Technology, 2015, 4(1):83-103 [26] TANG S B, LAI M O, LU L. Li-ion diffusion in highly (003) oriented LiCoO2 thin film cathode prepared by pulsed laser deposition[J]. Journal of Alloys and Compounds, 2008, 449(1/2):300-303. [27] Tang K, Yu X Q, Sun J P, et al. Kinetic analysis on LiFePO4 thin films by CV, GITT, and EIS[J]. Electrochimica Acta, 2011, 56:4869-4875. [28] RUI X H, DING N, LIU J, et al. Analysis of the chemical diffusion coefficient of lithium ions in Li3V2(PO4)3 cathode material[J]. Electrochimica Acta, 2010, 55(7):2384-2390. [29] DING N, XU J, YAO Y X, et al. Determination of the diffusion coefficient of lithium ions in nano-Si[J]. Solid State Ionics, 2009, 180(2/3):222-225. [30] RHO Y H, KANAMURA K. Li+ ion diffusion in Li4Ti5O12 thin film electrode prepared by PVP sol-gel method[J]. Journal of Solid State Chemistry, 2004, 177(6):2094-2100. [31] XU W, CHEN X L, DING F, et al. Reinvestigation on the state-of-the-art nonaqueous carbonate electrolytes for 5 V Li-ion battery applications[J]. Journal of Power Sources, 2012, 213:304-316. [32] REDDY V P, SMART M C, CHIN K B, et al.[sup 13] C NMR spectroscopic, CV, and conductivity studies of propylene carbonate-based electrolytes containing various lithium salts[J]. Electrochemical and Solid-State Letters, 2005. 8(6):A294. [33] 周思思. 关于锂盐LiFSI与LiFNFSI的电解液研究[D]. 北京:中国科学院大学, 2012. [34] CHEN X L, XU W, ENGELHARD M H, et al. Mixed salts of LiTFSI and LiBOB for stable LiFePO4-based batteries at elevated temperatures[J]. Journal of Materials Chemistry A, 2014, 2(7):2346-2352. [35] LI Y X, ZHANG X W, KHAN S A, et al. Attenuation of aluminum current collector corrosion in LiTFSI electrolytes using fumed silica nanoparticles[J]. Electrochemical and Solid State Letters, 2004, 7(8):A228-A230. |
[1] | Xiaoyu SHEN, Guanjun CEN, Ronghan QIAO, Jing ZHU, Hongxiang JI, Mengyu TIAN, Zhou JIN, Yong YAN, Yida WU, Yuanjie ZHAN, Hailong YU, Liubin BEN, Yanyan LIU, Xuejie HUANG. Reviews of selected 100 recent papers for lithium batteries (Apr. 1, 2022 to May 31, 2022) [J]. Energy Storage Science and Technology, 2022, 11(7): 2007-2022. |
[2] | ZHOU Weidong, HUANG Qiu, XIE Xiaoxin, CHEN Kejun, LI Wei, QIU Jieshan. Research progress of polymer electrolyte for solid state lithium batteries [J]. Energy Storage Science and Technology, 2022, 11(6): 1788-1805. |
[3] | XIE Chenglu, HUANG Xiankun, KANG Lixia, LIU Yongzhong. Electrocatalytic performances of Ru nanoparticles supported on carbon nanotubes by colloidal solution for synthetic ammonia [J]. Energy Storage Science and Technology, 2022, 11(6): 1947-1956. |
[4] | Ronghan QIAO, Guanjun CEN, Xiaoyu SHEN, Mengyu TIAN, Hongxiang JI, Feng TIAN, Wenbin QI, Zhou JIN, Yida WU, Yuanjie ZHAN, Yong YAN, Liubin BEN, Hailong YU, Yanyan LIU, Xuejie HUANG. Reviews of selected 100 recent papers for lithium batteries (Feb. 1, 2022 to Mar. 31, 2022) [J]. Energy Storage Science and Technology, 2022, 11(5): 1289-1304. |
[5] | Zhiqiang ZHAO, Hengjun LIU, Xixiang XU, Yuanyuan PAN, Qinghao LI, Hongsen LI, Han HU, Qiang LI. Magnetometry technique in energy storage science [J]. Energy Storage Science and Technology, 2022, 11(3): 818-833. |
[6] | Guanjun CEN, Jing ZHU, Ronghan QIAO, Xiaoyu SHEN, Hongxiang JI, Mengyu TIAN, Feng TIAN, Zhou JIN, Yong YAN, Yida WU, Yuanjie ZHAN, Hailong YU, Liubin BEN, Yanyan LIU, Xuejie HUANG. Reviews of selected 100 recent papers for lithium batteries (Dec. 1, 2021 to Jan. 31, 2022) [J]. Energy Storage Science and Technology, 2022, 11(3): 1077-1092. |
[7] | Xue HAN, Wei DENG, Xufeng ZHOU, Zhaopin LIU. Patenting activity of graphene for energy storage [J]. Energy Storage Science and Technology, 2022, 11(1): 335-349. |
[8] | Yun TANG, Fang YUE, Kaimo GUO, Lanchun LI, Wangsong KE, Wei CHEN. Analysis of the development trend and the innovation ability of an all-solid-state lithium battery technology [J]. Energy Storage Science and Technology, 2022, 11(1): 359-369. |
[9] | Mengyu TIAN, Jing ZHU, Guanjun CEN, Ronghan QIAO, Xiaoyu SHEN, Hongxiang JI, Feng TIAN, Zhou JIN, Yong YAN, Yida WU, Yuanjie ZHAN, Hailong YU, Liubin BEN, Yanyan LIU, Xuejie HUANG. Reviews of selected 100 recent papers for lithium batteries(Oct. 1, 2021 to Nov. 30, 2021) [J]. Energy Storage Science and Technology, 2022, 11(1): 297-312. |
[10] | Hongxiang JI, Zhou JIN, Mengyu TIAN, Yida WU, Yuanjie ZHAN, Feng TIAN, Yong YAN, Guanjun CEN, Ronghan QIAO, Xiaoyu SHEN, Jing ZHU, Liubin BEN, Hailong YU, Yanyan LIU, Xuejie HUANG. Reviews of selected 100 recent papers for lithium batteries (Aug. 1, 2021 to Sept. 30, 2021) [J]. Energy Storage Science and Technology, 2021, 10(6): 2411-2427. |
[11] | Shiying ZHAN, Dongxu YU, Nan CHEN, Fei DU. Advances of aqueous batteries with non-metallic cation charge carriers [J]. Energy Storage Science and Technology, 2021, 10(6): 2144-2155. |
[12] | Feng TIAN, Hongxiang JI, Mengyu TIAN, Ronghan QIAO, Guanjun CEN, Xiaoyu SHEN, Yida WU, Yuanjie ZHAN, Zhou JIN, Yong YAN, Liubin BEN, Hailong YU, Yanyan LIU, Xuejie HUANG. Reviews of selected 100 recent papers for lithium batteries (Jun. 1, 2021 to Jul. 31, 2021) [J]. Energy Storage Science and Technology, 2021, 10(5): 1854-1868. |
[13] | Guanjun CEN, Ronghan QIAO, Xiaoyu SHEN, Mengyu TIAN, Hongxiang JI, Feng TIAN, Wenbin QI, Zhou JIN, Yida WU, Yuanjie ZHAN, Yong YAN, Liubin BEN, Hailong YU, Yanyan LIU, Xuejie HUANG. Reviews of selected 100 recent papers for lithium batteries (Apr. 1, 2021 to May 31, 2021) [J]. Energy Storage Science and Technology, 2021, 10(4): 1237-1252. |
[14] | Yuxuan XIE, Yunju BAI, Yijun XIAO. Overall capacity allocation of energy storage tram with ground charging piles [J]. Energy Storage Science and Technology, 2021, 10(4): 1388-1399. |
[15] | Yanming CUI, Zhihua ZHANG, Yuanqiao HUANG, Jiu LIN, Xiayin YAO, Xiaoxiong XU. Prototype all-solid-state battery electrodes preparation and assembly technology [J]. Energy Storage Science and Technology, 2021, 10(3): 836-847. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||