Exploring the Synergy of LiBH4/NaBH4 Additives with Mg(BH4)2 Electrolyte Using Density Functional Theory

被引:9
|
作者
Deetz, Joshua D.
Cao, Fenglei
Sun, Huai [1 ]
机构
[1] Shanghai Jiao Tong Univ, Sch Chem & Chem Engn, Shanghai 200240, Peoples R China
基金
中国国家自然科学基金;
关键词
ALUMINUM-CHLORIDE COMPLEX; MAGNESIUM DEPOSITION; RECHARGEABLE BATTERIES; HYBRID BATTERY; HIGH-VOLTAGE; MG; BOROHYDRIDE; REVERSIBILITY; STABILITY; REDUCTION;
D O I
10.1149/2.0171811jes
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Rechargeable magnesium batteries have attracted considerable interest recently. In magnesium borohydride electrolyte, it has been reported that the use of LiBH4 and NaBH4 additives improve several desirable electrochemical properties, such as coulombic efficiency and current density. The primary goal of this study was to investigate the effects of LiBH4 and NaBH4 additives on the energetics of ion formation in Mg(BH4)(2) electrolyte. Density functional theory was used to elucidate the liquid structure and most stable species of LiBH4 and NaBH4 salts in two solvents, tetrahydrofuran and monoglyme. Calculations of cation dimer complexes, those containing two Li+ or Na+, indicate that dimers may form even at low concentrations of salt in tetrahydrofuran. The simultaneous formation of cationic and anionic complexes, such as Li+ and Li(BH4)(2)(-) with solvent ligands, is a favorable pathway for generating ions. This co-formation lowers the free energy of ion formation in general, which explains the synergetic effect when Li or Na is used as an additive to Mg-based electrolyte. The additives unlock additional reaction pathways that enhance the concentration of magnesium cations by orders of magnitude. (C) 2018 The Electrochemical Society.
引用
收藏
页码:A2451 / A2457
页数:7
相关论文
共 50 条
  • [21] Unexpected dehydrogenation behavior of LiBH4/Mg(BH4)2 mixture associated with the in situ formation of dual-cation borohydride
    Fang, Zhan-Zhao
    Kang, Xiang-Dong
    Wang, Ping
    Li, Hai-Wen
    Orimo, Shin-Ichi
    JOURNAL OF ALLOYS AND COMPOUNDS, 2010, 491 (1-2) : L1 - L4
  • [22] Altered reaction pathways of eutectic LiBH4-Mg(BH4)2 by nanoconfinement
    Zhao-Karger, Zhirong
    Witter, Raiker
    Bardaji, Elisa Gil
    Wang, Di
    Cossement, Daniel
    Fichtner, Maximilian
    JOURNAL OF MATERIALS CHEMISTRY A, 2013, 1 (10) : 3379 - 3386
  • [23] Improved Hydrogen Storage Properties of NaBH4 Destabilized by CaH2 and Ca(BH4)2
    Mao, Jianfeng
    Guo, Zaiping
    Yu, Xuebin
    Liu, Huakun
    JOURNAL OF PHYSICAL CHEMISTRY C, 2011, 115 (18): : 9283 - 9290
  • [24] Deliquescence of NaBH4 from Density Functional Theory and Experiments
    Li, Ping
    Yu, Lin
    Matthews, Michael A.
    Saidi, Wissam A.
    Johnson, J. Karl
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2013, 52 (38) : 13849 - 13861
  • [25] LIBH4(NABH4) ME3SICL, AN UNUSUALLY STRONG AND VERSATILE REDUCING AGENT
    GIANNIS, A
    SANDHOFF, K
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION IN ENGLISH, 1989, 28 (02): : 218 - 220
  • [26] Decomposition behaviour of Mn(BH4)2 formed by ball-milling LiBH4 and MnCl2
    Liu, Ruixia
    Reed, Daniel
    Book, David
    JOURNAL OF ALLOYS AND COMPOUNDS, 2012, 515 : 32 - 38
  • [27] SOLUBILITY ISOTHERMS IN SR(BH4)2-LIBH4-THF AND BA(BH4)2-LIBH4-THF SYSTEMS AT 20 DEGREES C
    MIKHEEVA, VI
    TOLMACHE.LN
    SIZAREVA, AS
    ZHURNAL NEORGANICHESKOI KHIMII, 1974, 19 (04): : 1140 - 1141
  • [28] Discovery of Fluidic LiBH4 on Scaffold Surfaces and Its Application for Fast Co-confinement of LiBH4-Ca(BH4)2 into Mesopores
    Lee, Hyun-Sook
    Hwang, Son-Jong
    To, Magnus
    Lee, Young-Su
    Cho, Young Whan
    JOURNAL OF PHYSICAL CHEMISTRY C, 2015, 119 (17): : 9025 - 9035
  • [29] SOLUBILITY ISOTHERM IN SYSTEM MG(BH4)2-LIBH4-ETHER AT 20 DEGREES
    KONOPLEV, VN
    MIKHEEVA, VI
    DOKLADY AKADEMII NAUK SSSR, 1972, 203 (06): : 1307 - &
  • [30] Nanostructures of LiBH4: a density-functional study
    Vajeeston, P.
    Ravindran, P.
    Fjellvag, H.
    NANOTECHNOLOGY, 2009, 20 (27)