中文版 | English
Title

Theoretical Prediction of Spinel Na2InxSc0.666−xCl4 and Rock-Salt Na3In1−xScxCl6 Superionic Conductors for All-Solid-State Sodium-Ion Batteries

Author
Corresponding AuthorXia, Hui; Zhao, Yusheng; Xia, Wei
Publication Years
2023-01
DOI
Source Title
EISSN
2513-0390
Volume6
Abstract
The demand for green, clean, and low-cost energy based on next generation all-solid-state batteries is increasing day by day. Compared with all-solid-state lithium-ion batteries, all-solid-state sodium-ion batteries (ASSSIBs) feature better environmental credentials, higher safety, and higher earth abundance. To develop such type of battery system, efficient solid-state sodium electrolytes with high ionic conductivity at room temperature, wide electrochemical stability window, low electronic conductivity, and interface compatibility are needed, but are rarely reported. In this article, density functional theory and ab initio molecular dynamic simulations are performed to predict new sodium solid electrolytes, which produces a series of sodium superionic conductors with remarkable ion-conducting properties and interface compatibility. The optimized composition discovered in this work can afford an extraordinary Na-ionic conductivity of up to 8 mS cm−1 with an extremely low activation energy of 0.20 eV; in addition to the high chemical and electrochemical stabilities, which could be a central idea for the experimental study and accelerate the development of high-performance ASSSIBs.
© 2022 Wiley-VCH GmbH.
Indexed By
EI ; SCI
Language
English
SUSTech Authorship
Corresponding
Funding Project
This work was supported by the National Natural Science Foundation of China (No. 51902150), the Guangdong Provincial Key Laboratory of Energy Materials for Electric Power (No. 2018B030322001), and the Shenzhen Science and Technology Program (No. KQTD20200820113047086). The authors acknowledge support from Center for Computational Science and Engineering at Southern University of Science and Technology.
WOS Accession No
WOS:000881729000001
Publisher
EI Accession Number
20224713135512
EI Keywords
Activation energy ; Calculations ; Density functional theory ; Interface states ; Ionic conduction in solids ; Ionic conductivity ; Lithium-ion batteries ; Metal ions ; Molecular dynamics ; Sodium-ion batteries ; Solid electrolytes ; Solid state devices
ESI Classification Code
Metallurgy:531.1 ; Electricity: Basic Concepts and Phenomena:701.1 ; Secondary Batteries:702.1.2 ; Semiconductor Devices and Integrated Circuits:714.2 ; Physical Chemistry:801.4 ; Chemical Agents and Basic Industrial Chemicals:803 ; Mathematics:921 ; Probability Theory:922.1 ; Classical Physics; Quantum Theory; Relativity:931 ; Atomic and Molecular Physics:931.3 ; Quantum Theory; Quantum Mechanics:931.4 ; High Energy Physics; Nuclear Physics; Plasma Physics:932
Data Source
EV Compendex
Citation statistics
Cited Times [WOS]:0
Document TypeJournal Article
Identifierhttp://kc.sustech.edu.cn/handle/2SGJ60CL/452702
DepartmentDepartment of Physics
前沿与交叉科学研究院
Affiliation
1.Eastern Institute for Advanced Study, Ningbo; 315201, China
2.School of Materials Science and Engineering, Nanjing University of Science and Technology, Nanjing, 210094, China
3.Department of Physics, University of Jhang, Punjab, Jhang; 35200, Pakistan
4.Department of Physics, Southern University of Science and Technology, Shenzhen; 518055, China
5.Guangdong Provincial Key Laboratory of Energy Materials for Electric Power, Academy for Advanced Interdisciplinary Studies, Southern University of Science and Technology, Shenzhen; 518055, China
Corresponding Author AffilicationDepartment of Physics;  Academy for Advanced Interdisciplinary Studies
Recommended Citation
GB/T 7714
Hussain, Fiaz,Yu, Pengcheng,Zhu, Jinlong,et al. Theoretical Prediction of Spinel Na2InxSc0.666−xCl4 and Rock-Salt Na3In1−xScxCl6 Superionic Conductors for All-Solid-State Sodium-Ion Batteries[J]. Advanced Theory and Simulations,2023,6.
APA
Hussain, Fiaz,Yu, Pengcheng,Zhu, Jinlong,Xia, Hui,Zhao, Yusheng,&Xia, Wei.(2023).Theoretical Prediction of Spinel Na2InxSc0.666−xCl4 and Rock-Salt Na3In1−xScxCl6 Superionic Conductors for All-Solid-State Sodium-Ion Batteries.Advanced Theory and Simulations,6.
MLA
Hussain, Fiaz,et al."Theoretical Prediction of Spinel Na2InxSc0.666−xCl4 and Rock-Salt Na3In1−xScxCl6 Superionic Conductors for All-Solid-State Sodium-Ion Batteries".Advanced Theory and Simulations 6(2023).
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