Quantitative structure-property relationship study of cathode volume changes in lithium ion batteries using ab-initio and partial least squares analysis

In this paper, we report a method through the combination of ab-initio calculations and partial least squares (PLS) analysis to develop the Quantitative Structure –Activity Relationship (QSAR) formulations of cathode volume changes in lithium ion batteries. The PLS analysis is based on ab-initio cal...

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Main Authors: Xuelong Wang, Ruijuan Xiao, Hong Li, Liquan Chen
Format: Article
Language:English
Published: Elsevier 2017-09-01
Series:Journal of Materiomics
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2352847816301113
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spelling doaj-f61a7eb547b84f08955cc876e2f2220c2020-11-25T00:39:55ZengElsevierJournal of Materiomics2352-84782017-09-013317818310.1016/j.jmat.2017.02.002Quantitative structure-property relationship study of cathode volume changes in lithium ion batteries using ab-initio and partial least squares analysisXuelong WangRuijuan XiaoHong LiLiquan ChenIn this paper, we report a method through the combination of ab-initio calculations and partial least squares (PLS) analysis to develop the Quantitative Structure –Activity Relationship (QSAR) formulations of cathode volume changes in lithium ion batteries. The PLS analysis is based on ab-initio calculation data of 14 oxide cathodes with spinel structure LiX2O4 and 14 oxide cathodes with layered-structure LiXO2 (X = Ti, V, Cr, Mn, Fe, Co, Ni, Nb, Mo, Ru, Rh, Pd, Ta, Ir). Five types of descriptors, describing the characteristics of each compound from crystal structure, element, composition, local distortion and electronic level, with 34 factors in total, are adopted to obtain the QSAR formulation. According to the variable importance in projection analysis, the radius of X4+ ion, and the X octahedron descriptors make major contributions to the volume change of cathode during delithiation. The analysis is hopefully applied to the virtual screening and combinatorial design of low-strain cathode materials for lithium ion batteries.http://www.sciencedirect.com/science/article/pii/S2352847816301113Low-strain cathodeLithium ion batteryAb-initio calculationsPartial least squares regressionQSAR
collection DOAJ
language English
format Article
sources DOAJ
author Xuelong Wang
Ruijuan Xiao
Hong Li
Liquan Chen
spellingShingle Xuelong Wang
Ruijuan Xiao
Hong Li
Liquan Chen
Quantitative structure-property relationship study of cathode volume changes in lithium ion batteries using ab-initio and partial least squares analysis
Journal of Materiomics
Low-strain cathode
Lithium ion battery
Ab-initio calculations
Partial least squares regression
QSAR
author_facet Xuelong Wang
Ruijuan Xiao
Hong Li
Liquan Chen
author_sort Xuelong Wang
title Quantitative structure-property relationship study of cathode volume changes in lithium ion batteries using ab-initio and partial least squares analysis
title_short Quantitative structure-property relationship study of cathode volume changes in lithium ion batteries using ab-initio and partial least squares analysis
title_full Quantitative structure-property relationship study of cathode volume changes in lithium ion batteries using ab-initio and partial least squares analysis
title_fullStr Quantitative structure-property relationship study of cathode volume changes in lithium ion batteries using ab-initio and partial least squares analysis
title_full_unstemmed Quantitative structure-property relationship study of cathode volume changes in lithium ion batteries using ab-initio and partial least squares analysis
title_sort quantitative structure-property relationship study of cathode volume changes in lithium ion batteries using ab-initio and partial least squares analysis
publisher Elsevier
series Journal of Materiomics
issn 2352-8478
publishDate 2017-09-01
description In this paper, we report a method through the combination of ab-initio calculations and partial least squares (PLS) analysis to develop the Quantitative Structure –Activity Relationship (QSAR) formulations of cathode volume changes in lithium ion batteries. The PLS analysis is based on ab-initio calculation data of 14 oxide cathodes with spinel structure LiX2O4 and 14 oxide cathodes with layered-structure LiXO2 (X = Ti, V, Cr, Mn, Fe, Co, Ni, Nb, Mo, Ru, Rh, Pd, Ta, Ir). Five types of descriptors, describing the characteristics of each compound from crystal structure, element, composition, local distortion and electronic level, with 34 factors in total, are adopted to obtain the QSAR formulation. According to the variable importance in projection analysis, the radius of X4+ ion, and the X octahedron descriptors make major contributions to the volume change of cathode during delithiation. The analysis is hopefully applied to the virtual screening and combinatorial design of low-strain cathode materials for lithium ion batteries.
topic Low-strain cathode
Lithium ion battery
Ab-initio calculations
Partial least squares regression
QSAR
url http://www.sciencedirect.com/science/article/pii/S2352847816301113
work_keys_str_mv AT xuelongwang quantitativestructurepropertyrelationshipstudyofcathodevolumechangesinlithiumionbatteriesusingabinitioandpartialleastsquaresanalysis
AT ruijuanxiao quantitativestructurepropertyrelationshipstudyofcathodevolumechangesinlithiumionbatteriesusingabinitioandpartialleastsquaresanalysis
AT hongli quantitativestructurepropertyrelationshipstudyofcathodevolumechangesinlithiumionbatteriesusingabinitioandpartialleastsquaresanalysis
AT liquanchen quantitativestructurepropertyrelationshipstudyofcathodevolumechangesinlithiumionbatteriesusingabinitioandpartialleastsquaresanalysis
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