LiTDI based lithium-ion cells electrolyte compositions

被引:7
作者
Niedzicki, L.
Oledzki, P.
Wieczorek, P.
Marcinek, M.
Wieczorek, W.
机构
[1] Warsaw University of Technology, Faculty of Chemistry, Noakowskiego 3, Warsaw
关键词
Lithium-ion; Electrolyte; Silicon; Transference; LiTDI; Cycling; NONAQUEOUS ELECTROLYTES; POLYMER ELECTROLYTES; METAL ANODE; BATTERIES; CARBONATE; SALTS; DECOMPOSITION; OPTIMIZATION; ADDITIVES; CORROSION;
D O I
10.1016/j.synthmet.2016.12.005
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Electrolyte compositions for future lithium-anode batteries involving silicon-composite anodes are studied in this paper. The lithium salt of TDI (4,5-dicyano-2-trifluoromethanoimidazole) was used due to its high lithium cation conductivity, the low concehtrations needed for good electrolyte performance (material savings), as well as its extraordinary stability against high temperatures, electrochemical potentials, and moisture, which is unmatched by other commercially available salts. A systematic investigation of the dependence of ionic conductivity on the concentration of SEI-stabilizing additives in LiTDI-based electrolytes was performed. Subsequently, the best conductive electrolyte compositions were used in half-cells involving silicon composite anodes and tested in long-term high-rate charge discharge cycling. For all the studied systems, including electrolytes at low concentrations (0.31 mol kg(-1)), the ionic conductivity at room temperature (20 degrees C) was above 4 mS cm(-1). Lithidm cation transference numbers were measured for the most promising samples, almost exclusively exhibiting values above 0.5. Pure electrolytes, 0.31 and 0.63 mol kg(-1) LiTDI in EC:DMC (1:2 weight ratio), have shown anode discharge capacities as high as 1500 and 900 mAh g(-1), respectively. In particular, a 0.63 mol kg(-1) concentration left little room for improvement, showing very good stability by maintaining the same (or higher) capacity for the first 125 cycles. SEI-stabilizing additives improved the cycling stability in terms of plot smoothness. (C) 2016 Elsevier B.V. All rights reserved.
引用
收藏
页码:73 / 79
页数:7
相关论文
共 26 条
[11]  
Nambu N., 2011, 62 ANN M ISE 11 16 S
[12]   LiTDI and solvent mixture based electrolytes for lithium-ion cells [J].
Niedzicki, L. ;
Brzozowski, B. ;
Wieczorek, P. .
ELECTROCHIMICA ACTA, 2015, 174 :625-629
[13]   Optimization of the lithium-ion cell electrolyte composition through the use of the LiTDI salt [J].
Niedzicki, L. ;
Karpierz, E. ;
Bitner, A. ;
Kasprzyk, M. ;
Zukowska, G. Z. ;
Marcinek, M. ;
Wieczorek, W. .
ELECTROCHIMICA ACTA, 2014, 117 :224-229
[14]   New type of imidazole based salts designed specifically for lithium ion batteries [J].
Niedzicki, L. ;
Zukowska, G. Z. ;
Bukowska, M. ;
Szczecinski, P. ;
Grugeon, S. ;
Laruelle, S. ;
Armand, M. ;
Panero, S. ;
Scrosati, B. ;
Marcinek, M. ;
Wieczorek, W. .
ELECTROCHIMICA ACTA, 2010, 55 (04) :1450-1454
[15]   Modern generation of polymer electrolytes based on lithium conductive imidazole salts [J].
Niedzicki, L. ;
Kasprzyk, M. ;
Kuziak, K. ;
Zukowska, G. Z. ;
Armand, M. ;
Bukowska, M. ;
Marcinek, M. ;
Szczecinski, P. ;
Wieczorek, W. .
JOURNAL OF POWER SOURCES, 2009, 192 (02) :612-617
[16]   Effect of vinylene carbonate as additive to electrolyte for lithium metal anode [J].
Ota, H ;
Shima, K ;
Ue, M ;
Yamaki, J .
ELECTROCHIMICA ACTA, 2004, 49 (04) :565-572
[17]   PHYSICOCHEMICAL STUDIES OF SOME CYCLIC CARBONATES .V. ALKALINE HYDROLYSIS OF VINTLENE CARBONATE [J].
SAADI, AH ;
LEE, WH .
JOURNAL OF THE CHEMICAL SOCIETY B-PHYSICAL ORGANIC, 1966, (01) :5-&
[18]   Influence of Li diffusion distance on the negative electrode properties of Si thin flakes for Li secondary batteries [J].
Saito, Morihiro ;
Yamada, Tomoyuki ;
Yodoya, Chihiro ;
Kamei, Akika ;
Hirota, Masato ;
Takenaka, Toshio ;
Tasaka, Akimasa ;
Inaba, Minoru .
SOLID STATE IONICS, 2012, 225 :506-509
[19]   Mixed solvent electrolytes containing fluorinated carboxylic acid esters to improve the thermal stability of lithium metal anode cells [J].
Sato, K ;
Yamazaki, I ;
Okada, S ;
Yamaki, J .
SOLID STATE IONICS, 2002, 148 (3-4) :463-466
[20]   X-Ray absorption spectroscopy of LiBF4 in propylene carbonate: a model lithium ion battery electrolyte [J].
Smith, Jacob W. ;
Lam, Royce K. ;
Sheardy, Alex T. ;
Shih, Orion ;
Rizzuto, Anthony M. ;
Borodin, Oleg ;
Harris, Stephen J. ;
Prendergast, David ;
Saykally, Richard J. .
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2014, 16 (43) :23568-23575