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国家自然科学基金(s11234013)

作品数:7 被引量:18H指数:3
相关作者:肖睿娟王雪龙向勇陈立泉李泓更多>>
相关机构:电子科技大学中国科学院更多>>
发文基金:国家自然科学基金国家高技术研究发展计划国家重点基础研究发展计划更多>>
相关领域:电气工程理学更多>>

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Quantitative structure-property relationship study of cathode volume changes in lithium ion batteries using ab-initio and partial least squares analysis被引量:6
2017年
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 eActivity 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 LiXO_(2)(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 X4t 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.
Xuelong WangRuijuan XiaoHong LiLiquan Chen
关键词:QSAR
对苯二甲酸盐衍生物在电化学储能中的应用
【引言】含有对苯二甲酸结构的有机小分子材料具有合成简单、分子结构多样性好、晶体框架稳定、电化学反应平台明显等特点,成为锂离子电池电极材料研究热点。以对苯二甲酸锂(LiCHO)为例,其充放电电压平台在0.8V左右,比容量为...
赵明娟马婧邓七九李超樊聪王丽平李晶泽
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Physics of electron and lithium-ion transport in electrode materials for Li-ion batteries被引量:1
2016年
The physics of ionic and electrical conduction at electrode materials of lithium-ion batteries(LIBs) are briefly summarized here, besides, we review the current research on ionic and electrical conduction in electrode material incorporating experimental and simulation studies. Commercial LIBs have been widely used in portable electronic devices and are now developed for large-scale applications in hybrid electric vehicles(HEV) and stationary distributed power stations. However,due to the physical limits of the materials, the overall performance of today's LIBs does not meet all the requirements for future applications, and the transport problem has been one of the main barriers to further improvement. The electron and Li-ion transport behaviors are important in determining the rate capacity of LIBs.
吴木生徐波欧阳楚英
关键词:电子传导混合动力电动汽车传导电流
High-throughput theoretical design of lithium battery materials被引量:1
2016年
The rapid evolution of high-throughput theoretical design schemes to discover new lithium battery materials is reviewed, including high-capacity cathodes, low-strain cathodes, anodes, solid state electrolytes, and electrolyte additives.With the development of efficient theoretical methods and inexpensive computers, high-throughput theoretical calculations have played an increasingly important role in the discovery of new materials. With the help of automatic simulation flow,many types of materials can be screened, optimized and designed from a structural database according to specific search criteria. In advanced cell technology, new materials for next generation lithium batteries are of great significance to achieve performance, and some representative criteria are: higher energy density, better safety, and faster charge/discharge speed.
凌仕刚高健肖睿娟陈立泉
关键词:电池材料高通量电解液添加剂结构数据库
Physics towards next generation Li secondary batteries materials:A short review from computational materials design perspective被引量:6
2013年
The physics that associated with the performance of lithium secondary batteries(LSB)are reviewed.The key physical problems in LSB include the electronic conduction mechanism,kinetics and thermodynamics of lithium ion migration,electrode/electrolyte surface/interface,structural(phase)and thermodynamics stability of the electrode materials,physics of intercalation and deintercalation.The relationship between the physical/chemical nature of the LSB materials and the batteries performance is summarized and discussed.A general thread of computational materials design for LSB materials is emphasized concerning all the discussed physics problems.In order to fasten the progress of the new materials discovery and design for the next generation LSB,the Materials Genome Initiative(MGI)for LSB materials is a promising strategy and the related requirements are highlighted.
OUYANG ChuYingCHEN LiQuan
关键词:材料物理热力学稳定性LSB基因组计划
固态锂电池中正极/电解质界面的密度泛函计算研究(英文)
2017年
锂离子电池的广泛应用对储能器件的能量密度、安全性和充放电速度提出了新的要求.全固态锂电池与传统锂离子电池相比具有更少的副反应和更高的安全性,已成为下一代储能器件的首选.构建匹配的电极/电解质界面是在全固态锂电池中获得优异综合性能的关键.本文采用第一性原理计算研究了固态电池中电解质表面及正极/电解质界面的局域结构和锂离子输运性质.选取β-Li_3PS_4(010)/LiCoO_2(104)和Li_4GeS_4(010)/LiCoO_2(104)体系计算了界面处的成键情况及锂离子的迁移势垒.部分脱锂态的正极/电解质界面上由于Co-S成键的加强削弱了P/Ge-S键的强度,降低了对Li+的束缚,从而导致了更低的锂离子迁移势垒.理解界面局域结构及其对Li+输运性质的影响将有助于人们在固态电池中构建性能优异的电极/电解质界面.
王雪龙肖睿娟向勇李泓陈立泉
关键词:固态锂电池
First principle study of LiXS_2(X=Ga, In) as cathode materials for Li ion batteries
2016年
From first principle calculations, we demonstrate that LiXS_2(X = Ga, In) compounds have potential applications as cathode materials for Li ion batteries. It is shown that Li can be extracted from the LiXS_2 lattice with relatively small volume change and the XS_4 tetrahedron structure framework remains stable upon delithiation. The theoretical capacity and average intercalation potential of the LiGaS_2(LiInS_2) cathode are 190.4(144._2) m Ah/g and 3.50 V(3.53 V). The electronic structures of the LiXS_2 are insulating with band gaps of _2.88 eV and 1.99 eV for X = Ga and In, respectively.However, Li vacancies, which are formed through delithiation, change the electronic structure substantially from insulating to metallic structure, indicating that the electrical conductivities of the LiXS_2 compounds should be good during cycling.Li ion migration energy barriers are also calculated, and the results show that Li ion diffusions in the LiXS_2 compounds can be as good as those in the currently widely used electrode materials.
饶凤雅宁芳华蒋礼威曾祥明吴木生徐波欧阳楚英
关键词:正极材料第一性原理GA第一原理计算电子结构
键价和方法计算离子输运通道筛选锂离子无机固体电解质(英文)被引量:5
2014年
Inorganic solid electrolytes have distinguished advantages in terms of safety and stability,and are promising to substitute for conventional organic liquid electrolytes.However,low ionic conductivity of typical candidates is the key problem.As connective diffusion path is the prerequisite for high performance,we screen for possible solid electrolytes from the 2004 International Centre for Diffraction Data(ICDD)database by calculating conduction pathways using Bond Valence(BV)method.There are 109846 inorganic crystals in the 2004 ICDD database,and 5295 of them contain lithium.Except for those with toxic,radioactive,rare,or variable valence elements,1380 materials are candidates for solid electrolytes.The rationality of the BV method is approved by comparing the existing solid electrolytes’conduction pathways we had calculated with those from experiments or first principle calculations.The implication for doping and substitution,two important ways to improve the conductivity,is also discussed.Among them Li2CO3 is selected for a detailed comparison,and the pathway is reproduced well with that based on the density functional studies.To reveal the correlation between connectivity of pathways and conductivity,/-LiAlO2 and Li2CO3 are investigated by the impedance spectrum as an example,and many experimental and theoretical studies are in process to indicate the relationship between property and structure.The BV method can calculate one material within a few minutes,providing an efficient way to lock onto targets from abundant data,and to investigate the structure-property relationship systematically.
GAO JianCHU GengHE MengZHANG ShuXIAO RuiJuanLI HongCHEN LiQuan
关键词:第一原理计算传导通路键价离子导电性无机晶体液体电解质
有机羰基盐类作为锂离子电池负极材料的研究
与传统的锂离子二次电池无机电极材料相比,有机小分子共轭羰基化合物具有环境友好,理论比容量高,多电子转移等特点而被广泛关注。以对苯二甲酸锂(LiTP)为例,其理论比容量为301mAh/g,嵌锂电位在0.8 V并且合成简单方...
邓七九薛晶邹崴王丽平周爱军李晶泽
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