Towards Li-air and Li-S Batteries: Understanding the Morphological Changes of Lithium Surfaces During Cycling at a Range of Current Densities in an Ionic Liquid Electrolyte

被引:2
作者
Bhatt, Anand I. [1 ]
Kao, Pon [1 ]
Best, Adam S. [1 ]
Hollenkamp, Anthony F. [1 ]
机构
[1] Commonwealth Sci Ind Res Org CSIRO, Div Energy Technol, Clayton, Vic 3169, Australia
来源
MOLTEN SALTS AND IONIC LIQUIDS 18 | 2012年 / 50卷 / 11期
关键词
QUATERNARY AMMONIUM CATION; ELECTROCHEMICAL PROPERTIES; LITHIATED GRAPHITE; TEMPERATURE; METAL; BIS(FLUOROSULFONYL)IMIDE; BEHAVIOR; MECHANISMS; EFFICIENCY; DISCHARGE;
D O I
10.1149/05011.0383ecst
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
The repetitive cycling of lithium metal electrodes in Li metal | ionic liquid electrolytes | Li metal coin cells was investigated. Lithium metal electrodes achieved 800 charge-discharge cycles at current densities of 0.1, 10 and 100 mA cm(-2). Voltage-time plots show evidence for instabilities manifesting themselves as voltage spikes. SEM imaging of cycled electrodes crucially shows no evidence for dendrite formation capable of leading to short circuit conditions, under all cycling regimes. SEM study shows evidence for surface corrosion. Based on the SEM study and cycling behavior a corrosion based equivalent circuit is presented and fitted to impedance data. SEM and impedance data are used to describe the changes in the voltage-time plots and ascribe the voltage spikes observed to changes in the lithium metal surface and subsequent corrosion. FTIR spectroscopy was used to analyze lithium electrodes after cycling. Evidence for IL surface coordination and LiOH formation was found.
引用
收藏
页码:383 / 401
页数:19
相关论文
共 36 条
[1]   A short review of failure mechanisms of lithium metal and lithiated graphite anodes in liquid electrolyte solutions [J].
Aurbach, D ;
Zinigrad, E ;
Cohen, Y ;
Teller, H .
SOLID STATE IONICS, 2002, 148 (3-4) :405-416
[2]   IMPEDANCE SPECTROSCOPY OF LITHIUM ELECTRODES .1. GENERAL BEHAVIOR IN PROPYLENE CARBONATE SOLUTIONS AND THE CORRELATION TO SURFACE-CHEMISTRY AND CYCLING EFFICIENCY [J].
AURBACH, D ;
ZABAN, A .
JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 1993, 348 (1-2) :155-179
[3]   Ionic Liquids with the Bis(fluorosulfonyl) imide Anion: Electrochemical Properties and Applications in Battery Technology [J].
Best, A. S. ;
Bhatt, A. I. ;
Hollenkamp, A. F. .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2010, 157 (08) :A903-A911
[4]  
Bhatt A. I., 2010, ELECTROCHEMICAL PROP, P299
[5]   Application of the N-propyl-N-methyl-pyrrolidinium Bis(fluorosulfonyl)imide RTIL Containing Lithium Bis(fluorosulfonyl)imide in Ionic Liquid Based Lithium Batteries [J].
Bhatt, Anand I. ;
Best, Adam S. ;
Huang, Junhua ;
Hollenkamp, Anthony F. .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2010, 157 (01) :A66-A74
[6]  
Bhattacharyya R, 2010, NAT MATER, V9, P504, DOI [10.1038/nmat2764, 10.1038/NMAT2764]
[7]  
Bruce PG, 2012, NAT MATER, V11, P19, DOI [10.1038/nmat3191, 10.1038/NMAT3191]
[8]  
Budi A., 2012, J PHYS CHEM IN PRESS
[9]   ELECTROCHEMICAL ASPECTS OF THE GENERATION OF RAMIFIED METALLIC ELECTRODEPOSITS [J].
CHAZALVIEL, JN .
PHYSICAL REVIEW A, 1990, 42 (12) :7355-7367
[10]   Charge-discharge and high temperature reaction of LiCoO2 in ionic liquid electrolytes based on cyano-substituted quaternary ammonium cation [J].
Egashira, Minato ;
Tanaka-Nakagawa, Maika ;
Watanabe, Izumi ;
Okada, Shigeto ;
Yamaki, Jun-ichi .
JOURNAL OF POWER SOURCES, 2006, 160 (02) :1387-1390