Recent progress on inorganic composite electrolytes for all-solid-state lithium batteries

被引:2
作者
Abitonze, Maurice [1 ]
Diko, Catherine Sekyerebea [1 ]
Zhu, Yimin [1 ]
Yang, Yan [1 ,2 ]
机构
[1] Dalian Maritime Univ, Coll Environm Sci & Engn, Dalian 116026, Peoples R China
[2] Petrochemicals Co Ltd, SINOPEC Dalian Res Inst Petr, Dalian 116045, Peoples R China
关键词
energy storage; ionic conductor; composites; sustainability; CONDUCTING GLASS-CERAMICS; IONIC-CONDUCTIVITY; ELECTROCHEMICAL PERFORMANCE; LI0.35LA0.55TIO3; CERAMICS; SUPERIONIC CONDUCTIVITY; REACTION-MECHANISM; PHASE-STABILITY; HIGH-VOLTAGE; LIQUID; INTERFACE;
D O I
10.1557/s43581-023-00076-w
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
To address the low energy density and potential safety issues of modern lithium-ion batteries (LIBs), all-solid-state lithium batteries (ASSLBs) with solid-state electrolytes (SSEs) have emerged as a highly promising option. Among different SSEs, inorganic electrolytes (IEs) are the most probable to replace organic liquid electrolytes because of their relatively high lithium ionic conductivity and wide cell voltage window. Nevertheless, IEs encounter challenges such as elevated interfacial resistance, limited ionic conductivity at room temperature, and air instabilities. Different hybrid solid electrolytes, including organic-inorganic hybrid solid electrolytes (OIHSEs) and inorganic composite electrolytes (ICEs), have been developed to overcome these difficulties. While OIHSEs have been reviewed thoroughly, ICEs have been reviewed rarely, despite their crucial role in the advancement of ASSLBs. This review focuses on the synthesis methodologies, structures, compositions, and electrochemical performance of ICEs, providing a comprehensive overview of the present state-of-art ICEs, with constructive conclusions and perspectives for different ICEs on varied purposes. Ultimately, this review aims to shed light on potential research directions for the designing and building of practical ASSLBs with varying ICEs, thereby promoting the energy storage application of ASSLBs.
引用
收藏
页码:219 / 266
页数:48
相关论文
共 194 条
  • [1] Improvement of the ionic conductivity on new substituted borohydride argyrodites
    Anh Ha Dao
    Lopez-Aranguren, Pedro
    Cerny, Radovan
    Guiader, Olivier
    Zhan, Junxian
    Cuevas, Fermin
    Latroche, Michel
    Jordy, Christian
    [J]. SOLID STATE IONICS, 2019, 339
  • [2] Structure and Dynamics for LiBH4-LiCl Solid Solutions
    Arnbjerg, Lene M.
    Ravnsbaek, Dorthe B.
    Filinchuk, Yaroslav
    Vang, Ronnie T.
    Cerenius, Yngve
    Besenbacher, Flemming
    Jorgensen, Jens-Erik
    Jakobsen, Hans Jorgen
    Jensen, Torben R.
    [J]. CHEMISTRY OF MATERIALS, 2009, 21 (24) : 5772 - 5782
  • [3] Inorganic Solid-State Electrolytes for Lithium Batteries: Mechanisms and Properties Governing Ion Conduction
    Bachman, John Christopher
    Muy, Sokseiha
    Grimaud, Alexis
    Chang, Hao-Hsun
    Pour, Nir
    Lux, Simon F.
    Paschos, Odysseas
    Maglia, Filippo
    Lupart, Saskia
    Lamp, Peter
    Giordano, Livia
    Shao-Horn, Yang
    [J]. CHEMICAL REVIEWS, 2016, 116 (01) : 140 - 162
  • [4] Research progress in Li-argyrodite-based solid-state electrolytes
    Bai, Xiangtao
    Duan, Yi
    Zhuang, Weidong
    Yang, Rong
    Wang, Jiantao
    [J]. JOURNAL OF MATERIALS CHEMISTRY A, 2020, 8 (48) : 25663 - 25686
  • [5] First principle study of strain effect on structural and dehydrogenation properties of complex hydride LiBH4
    Benzidi, H.
    Lakhal, M.
    Benyoussef, A.
    Hamedoun, M.
    Loulidi, M.
    El Kenz, A.
    Mounkachi, O.
    [J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2017, 42 (30) : 19481 - 19486
  • [6] Nanoconfined LiBH4 as a Fast Lithium Ion Conductor
    Blanchard, Didier
    Nale, Angeloclaudio
    Sveinbjoernsson, Dadi
    Eggenhuisen, Tamara M.
    Verkuijlen, Margriet H. W.
    Suwarno
    Vegge, Tejs
    Kentgens, Arno P. M.
    de Jongh, Petra E.
    [J]. ADVANCED FUNCTIONAL MATERIALS, 2015, 25 (02) : 184 - 192
  • [7] Highly Crystalline Layered VS2. Nanosheets for All-Solid-State Lithium Batteries with Enhanced Electrochemical Performances
    Cai, Liangting
    Zhang, Qiang
    Mwizerwa, Jean Pierre
    Wan, Hongli
    Yang, Xuelin
    Xu, Xiaoxiong
    Yao, Xiayin
    [J]. ACS APPLIED MATERIALS & INTERFACES, 2018, 10 (12) : 10053 - 10063
  • [8] Cao SY, 2019, J KOREAN CERAM SOC, V56, P111
  • [9] Processing and Properties of Garnet-Type Li7La3Zr2O12 Ceramic Electrolytes
    Chen, Chao
    Wang, Kexin
    He, Hongying
    Hanc, Emil
    Kotobuki, Masashi
    Lu, Li
    [J]. SMALL, 2023, 19 (12)
  • [10] Improving ionic conductivity of Li0.35La0.55TiO3 ceramics by introducing Li7La3Zr2O12 sol into the precursor powder
    Chen, Kai
    Huang, Mian
    Shen, Yang
    Lin, Yuanhua
    Nan, C. W.
    [J]. SOLID STATE IONICS, 2013, 235 : 8 - 13