Interfacial Decomposition Behaviour of Triethyl Phosphate-Based Electrolytes for Lithium-Ion Batteries

被引:0
作者
Gebert, Florian [1 ]
Lundstrom, Robin [1 ]
van Ekeren, Wessel [1 ]
Naylor, Andrew J. [1 ]
机构
[1] Uppsala Univ, Dept Chem, Angstrom Lab, Uppsala, Sweden
关键词
Lithium-ion battery; Non-flammable electrolyte; Electrolyte decomposition; Solid electrolyte interphase; Electrochemistry; Interfaces; CARBONATE-BASED ELECTROLYTES; ETHYLENE CARBONATE; LI-ION; SOLVATION STRUCTURE; SURFACE-CHEMISTRY; GRAPHITE; SEI; REDUCTION; PERFORMANCE; ELECTRODES;
D O I
暂无
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Triethyl phosphate (TEP) is a cheap, environmentally benign, and non-flammable electrolyte solvent, whose implementation in lithium-ion batteries is held back by its co-intercalation into graphite anodes, resulting in exfoliation of the graphite structure. In this work, the electrode-electrolyte interface behaviour of electrolytes containing up to 100 % TEP is investigated and correlated to electrochemical performance. High capacity and stable cycling are maintained with up to 30 % TEP in carbonate ester-based electrolytes, but above this threshold the reversibility of Li+ intercalation into graphite drops sharply to almost zero. This represents a potential route to improved battery safety, while TEP can also improve safety indirectly by enabling the use of lithium bis(oxalato)borate, a fluorine-free salt with limited solubility in traditional electrolytes. To understand the poor performance at TEP concentrations of >30 %, its solvation behaviour and interfacial reaction chemistry were studied. Nuclear magnetic resonance spectroscopy data confirms changes in the Li+ solvation shell above 30 % TEP, while operando gas analysis indicates extensive gas evolution from TEP decomposition at the electrode above the threshold concentration, which is almost entirely absent below it. X-ray photoelectron spectroscopy depth profiling of electrodes demonstrates poor passivation by the solid electrolyte interphase above 30 % TEP and significant graphite exfoliation.
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页数:9
相关论文
共 47 条
[11]   Intermittent Current Interruption Method for Commercial Lithium-Ion Batteries Aging Characterization [J].
Geng, Zeyang ;
Thiringer, Torbjorn ;
Lacey, Matthew J. .
IEEE TRANSACTIONS ON TRANSPORTATION ELECTRIFICATION, 2022, 8 (02) :2985-2995
[12]   MOLECULAR-BASIS OF FLAME INHIBITION [J].
HASTIE, JW .
JOURNAL OF RESEARCH OF THE NATIONAL BUREAU OF STANDARDS SECTION A-PHYSICS AND CHEMISTRY, 1973, A 77 (06) :733-754
[13]   Experimental and theoretical studies on reduction mechanism of vinyl ethylene carbonate on graphite anode for lithium ion batteries [J].
Hu, YS ;
Kong, WH ;
Hong, L ;
Huang, XJ ;
Chen, LQ .
ELECTROCHEMISTRY COMMUNICATIONS, 2004, 6 (02) :126-131
[14]   1,3,2-Dioxathiolane-2,2-dioxide as film-forming agent for propylene carbonate based electrolytes for lithium-ion batteries [J].
Janssen, Pia ;
Schmitz, Raphael ;
Mueller, Romek ;
Isken, Philipp ;
Lex-Balducci, Alexandra ;
Schreiner, Christian ;
Winter, Martin ;
Cekic-Laskovic, Isidora ;
Schmitz, Rene .
ELECTROCHIMICA ACTA, 2014, 125 :101-106
[15]   Ionic liquids as electrolytes for energy storage applications - A modelling perspective [J].
Jonsson, Erlendur .
ENERGY STORAGE MATERIALS, 2020, 25 :827-835
[16]   Absolute viscosity and density of trisubstituted phosphoric esters [J].
Kannan, S ;
Kishore, K .
JOURNAL OF CHEMICAL AND ENGINEERING DATA, 1999, 44 (04) :649-655
[17]   All-Solid-State Batteries and their Remaining Challenges A potential route towards safer, higher performing batteries [J].
Kasemchainan, Jitti ;
Bruce, Peter G. .
JOHNSON MATTHEY TECHNOLOGY REVIEW, 2018, 62 (02) :177-180
[18]   Influence of the Electrolyte on the Internal Resistance of Lithium-Sulfur Batteries Studied with an Intermittent Current Interruption Method [J].
Lacey, Matthew J. .
CHEMELECTROCHEM, 2017, 4 (08) :1997-2004
[19]  
Liaw B.Y., 2019, Electrochemical Power Sources: Fundamentals, Systems, and Applications, P269, DOI [10.1016/B978-0-444-63777-2.00008-6, DOI 10.1016/B978-0-444-63777-2.00008-6]
[20]   Ethylene Carbonate Regulated Solvation of Triethyl Phosphate to Enable High-Conductivity, Nonflammable, and Graphite Compatible Electrolyte [J].
Liu, Mengchuang ;
Zeng, Ziqi ;
Gu, Chenkai ;
Ma, Fenfen ;
Wu, Yuanke ;
Wu, Qiang ;
Yang, Xiankun ;
Chen, Xin ;
Cheng, Shijie ;
Xie, Jia .
ACS ENERGY LETTERS, 2023, 9 (01) :136-144