Solid INTERface Batteries - SINTER
Solid INTERface Batteries - SINTER
批准号:
132228
负责人:
金额:
$20.61万
依托单位:
依托单位国家:
英国
项目类别:
Feasibility Studies
财政年份:
2016
资助国家:
英国
项目状态:
已结题
起止时间:
2016 至 --
中文摘要
项目SINTER,固体界面锂离子电池,将研究新的材料和工艺,以形成固态电池和优化其界面。合作伙伴拉夫堡大学和约翰逊马修技术中心将利用协同理论和实验方法来研究一系列Li导电玻璃陶瓷电解质材料,从而研究掺杂剂对Li迁移率的影响,从而研究性能和热稳定性。拉夫堡大学将使用计算机建模研究来研究项目材料的静态晶格模拟,MD和从头算方法来确定锂离子在电解质中的传输机制,表面和电极-电解质界面和一种组合方法来映射相空间,以探索从玻璃相到结晶相的过渡约翰逊马特他们将制造由建模工作定义的新型电解质,并研究各种方法来整合不同电极材料的固体电解质,包括评估新材料用于流延和3D打印沉积方法的可行性。
英文摘要
Project SINTER, Solid INTERface Lithium Ion Batteries, will investigate novel materials and processes to formsolid state batteries and optimise their interfaces. Partners Loughborough University and Johnson MattheyTechnology Centre will utilise a synergistic theoretical and experimental approach to investigate a range of Liconducting glass-ceramic electrolyte materials and consequently the effect of dopants on the Li mobility, andthus performance and thermal stability. Loughborough University will use computer modelling studies to studystatic lattice simulations of project materials, MD and Ab initio methods to identify Li–ion transportmechanisms across electrolyte bulk, surfaces and electrode–electrolyte interfaces and a combinatorialapproach to mapping the phase space to explore the transition from glassy to crystalline phases JohnsonMatthey will fabricate the novel electrolytes defined by modelling work and investigate various approaches tointegrate the solid electrolytes with different electrode materials, including assessement of feasibility of thenew materials for tape casting and 3D printing deposition methodologies.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
海外基金