Correlation between the local scale structure and the electrochemical properties in lithium orthosilicate cathode materials

被引:8
作者
Mancini, Alessandro [1 ,2 ]
Barbieri, Victoria Raissa [1 ,2 ]
Neuefeind, Joerg C. [3 ]
Page, Katharine [3 ,4 ]
Malavasi, Lorenzo [1 ,2 ]
机构
[1] Univ Pavia, Dept Chem, I-27100 Pavia, Italy
[2] Univ Pavia, INSTM, I-27100 Pavia, Italy
[3] Oak Ridge Natl Lab, Chem & Engn Mat Div, Spallat Neutron Source, Oak Ridge, TN 37831 USA
[4] Los Alamos Natl Lab, Lujan Neutron Scattering Ctr, Los Alamos, NM 87545 USA
关键词
CRYSTAL-STRUCTURE; ENERGY-STORAGE; LI2MNSIO4; BATTERY; POLYMORPH; LI2FESIO4; CHEMISTRY;
D O I
10.1039/c4ta04063e
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Lithium metal orthosilicates with general formula Li2MSiO4 (M = Mn, Fe and Co) are among the most attractive new materials as potential high-specific-energy cathodes for lithium batteries. All the members of this family present a rich polymorphism with at least three clearly identified crystal structures of each Li2MSiO4 compound. Several theoretical investigations have highlighted that the energy stability of the different polymorphs is very close to each other irrespective of their average crystal structures. At the same time, the calculated and experimental electrochemical performances are again very similar among different polymorphs. By means of neutron total scattering investigation of different polymorphs (monoclinic and orthorhombic) of Li2FeSiO4 and Li2MnSiO4 orthosilicates coupled to Pair Distribution Function (PDF) analysis we showed that, at the local scale, all the polymorphs have the same structure (in particular the structure of the monoclinic polymorph) irrespective of the average structure they possess. This experimental evidence of a strong similarity at the local scale can be correlated with the observed electrochemical similarity (such as the lithium extraction voltages) among the different orthosilicate polymorphs, thus providing an approach to elucidate the relevance of local versus long-range structure.
引用
收藏
页码:17867 / 17874
页数:8
相关论文
共 50 条
[11]   Surface substitution of polyanion to improve structure stability and electrochemical properties of lithium-rich layered cathode oxides [J].
Zhong, Jianjian ;
Yang, Zhe ;
Yu, Yang ;
Liu, Yanying ;
Li, Jianling ;
Kang, Feiyu .
APPLIED SURFACE SCIENCE, 2020, 512
[12]   Structure and Electrochemical Properties of LiCo1-yFeyPO4 Solid Solutions as High-Voltage Cathode Materials for Lithium-Ion Rechargeable Cells [J].
Podgornova, O. A. ;
Kosova, N. V. .
CHEMISTRY FOR SUSTAINABLE DEVELOPMENT, 2014, 22 (01) :53-59
[13]   Study of properties of cathode materials based on lithium-iron phosphate [J].
Smirnov K.S. ;
Zhorin V.A. ;
Smirnov S.E. .
Inorganic Materials: Applied Research, 2014, 5 (05) :467-470
[14]   Hydrolysis lignin: Electrochemical properties of the organic cathode material for primary lithium battery [J].
Gnedenkov, Sergey V. ;
Opra, Denis P. ;
Sinebryukhov, Sergey L. ;
Tsvetnikov, Alexander K. ;
Ustinov, Alexander Y. ;
Sergienko, Valentin I. .
JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY, 2014, 20 (03) :903-910
[15]   Understanding the Electrochemical Properties of Li-Rich Cathode Materials from First-Principles Calculations [J].
Cao, Tingting ;
Shi, Chunsheng ;
Zhao, Naiqin ;
He, Chunnian ;
Li, Jiajun ;
Liu, Enzuo .
JOURNAL OF PHYSICAL CHEMISTRY C, 2015, 119 (52) :28749-28756
[16]   Factors that affect volume change during electrochemical cycling in cathode materials for lithium ion batteries [J].
Wang, Ying ;
Liu, Jiahua ;
Chen, Taowen ;
Lin, Weicheng ;
Zheng, Jiaxin .
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2022, 24 (04) :2167-2175
[17]   Characterization and electrochemical activities of nanostructured transition metal nitrides as cathode materials for lithium sulfur batteries [J].
Mosavati, Negar ;
Salley, Steven O. ;
Ng, K. Y. Simon .
JOURNAL OF POWER SOURCES, 2017, 340 :210-216
[18]   Transport features in layered nickelates: correlation between structure, oxygen diffusion, electrical and electrochemical properties [J].
Sadykov, V. A. ;
Sadovskaya, E. M. ;
Pikalova, E. Yu. ;
Kolchugin, A. A. ;
Filonova, E. A. ;
Pikalov, S. M. ;
Eremeev, N. F. ;
Ishchenko, A. V. ;
Lukashevich, A. I. ;
Bassat, J. M. .
IONICS, 2018, 24 (04) :1181-1193
[19]   Electrochemical properties of Li2Mn1-xVxO3 (0 ≤ x ≤ 0.018) as cathode materials for secondary lithium batteries [J].
Kang, Kyung Wan ;
Kim, Won-Tae ;
Jeong, Yeon Uk .
JOURNAL OF CERAMIC PROCESSING RESEARCH, 2013, 14 (04) :468-471
[20]   Preparation and electrochemical properties of sulfur-acetylene black composites as cathode materials [J].
Zhang, B. ;
Lai, C. ;
Zhou, Z. ;
Gao, X. P. .
ELECTROCHIMICA ACTA, 2009, 54 (14) :3708-3713