参考文献/References:
[1] XU K. Nonaqueous liquid electrolytes for lithium-based rechargeable batteries[J]. Chemical reviews,2004,104(10):4303-4418.
[2]TARASCON J M,GUYOMARD D. New electrolyte compositions stable over the 0 to 5 V voltage range and compatible with the Li1+xMn2O4/carbon Li-ion cells[J]. Solid state ionics,1994,69(3-4):293-305.
[3]XU K. Electrolytes and interphases in Li-ion batteries and beyond[J]. Chemical reviews,2014,114(23):11503-11618.
[4]PLIMPTON S. Fast parallel algorithms for short-range molecular dynamics[J]. Journal of computational physics,1995,117(1):1-19.
[5]BUNTE S W,SUN H. Molecular modeling of energetic materials:the parameterization and validation of nitrate esters in the compass force field[J]. Journal of physical chemistry B,2000,104(11):2477-2489.
[6]SMART M C,RATNAKUMAR B V,RYAN-MOWREY V S,et al. Improved performance of lithium-ion cells with the use of fluorinated carbonate-based electrolytes[J]. Journal of power sources,2003,119(6):359-367.
[7]HOOVER W G. Canonical dynamics:equilibrium phase-space distributions[J]. Physical review A,1985,31(3):1695-1697.
[8]ANDERSEN H C. Molecular dynamics simulations at constant pressure and/or temperature[J]. Journal of chemical physics,1980,72(4):2384-2393.
[9]LEE S,PARK S S. Thermodynamic and dynamic properties in binary mixtures of propylene carbonate with dimethyl carbonate and ethylene carbonate[J]. Journal of molecular liquids,2012,175(22):97-102.
[10]NEUMANN M. Dipole moment fluctuation formulas in computer simulations of polar systems[J]. Molecular physics,1983,50(4):841-858.
[11]NEUMANN M,STEINHAUSER O. On the calculation of the frequency-dependent dielectric constant in computer simulations[J]. Molecular physics,1983,52(1):97-113.
[12]PARK S S,LEE S,BAE J Y,et al. Refractive indices of liquid-forming organic compounds by density functional theory[J]. Chemical physics letters,2011,511(4):466-470.
[13]BOOTH F. The dielectric constant of water and the saturation effect[J]. Journal of chemical physics,1951,19(4):391-934.
[14]ONSAGER L. Electric moments of molecules in liquids[J]. Journal of the American chemical society,1936,58(8):1486-1493.
[15]DANIELS I N,WANG Z,LAIRD B B. Dielectric properties of organic solvents in an electric field[J]. The journal of physical chemistry C,2016,121(2):1025-1031.
[16]RAVIKUMAR B,MYNAM M,RAI B. Effect of salt concentration on properties of lithium ion battery electrolytes:a molecular dynamics study[J]. The journal of physical chemistry C,2018,122(15):8173-8181.
[17]CUI W,LANSAC Y,LEE H,et al. Lithium ion solvation by ethylene carbonates in lithium-ion battery electrolytes,revisited by density functional theory with the hybrid solvation model and free energy correction in solution[J]. Physical chemistry chemical physics,2016,18(34):23607-23612.
[18]BURBA C M,FRECH R. Spectroscopic measurements of ionic association in solutions of LiPF6[J]. Journal of physical chemistry B,2005,109(31):15161-15164.
[19]BOGLE X,VAZQUEZ R,GREENBAUM S,et al. Understanding Li+-solvent interaction in nonaqueous carbonate electrolytes with 17O NMR[J]. Journal of physical chemistry letters,2013,4(10):1664-1668.
[20]LIANG C,KWAK K,CHO M. Revealing the solvation structure and dynamics of carbonate electrolytes in lithium-ion batteries by two-dimensional infrared spectrum modeling[J]. Journal of physical chemistry letters,2017,8(23):5779-5784.