...
首页> 外文期刊>RSC Advances >Solid electrolyte interphase formation between the Li0.29La0.57TiO3 solid-state electrolyte and a Li-metal anode: an ab initio molecular dynamics study
【24h】

Solid electrolyte interphase formation between the Li0.29La0.57TiO3 solid-state electrolyte and a Li-metal anode: an ab initio molecular dynamics study

机译:Li0.29LA0.57TiO3固态电解质和Li-Metal阳极之间的固体电解质相互相同:AB Initio分子动力学研究

获取原文
   

获取外文期刊封面封底 >>

       

摘要

An ab initio molecular dynamics study of an electrochemical interface between a solid-state-electrolyte Li _(0.29) La _(0.57) TiO _(3) and Li-metal is performed to analyze interphase formation and evolution when external electric fields of 0, 0.5, 1.0 and 2.0 V ? ~(?1) are applied. From this electrochemical stability analysis, it was concluded that lithium-oxide (Li _(2) O) and lanthanum-oxide (La _(2) O _(3) ) phases were formed at the electrolyte/anode interphase. As the electric field increased, oxygen from the electrolyte diffused through the Li-metal anode, increasing the amount of O from deeper crystallographic planes of the electrolyte that reacted with Li and La. A strong reduction of Ti was expected from their Bader charge variation from +3.5 in the bulk to +2.5 at the interface. Due to the loss of Li atoms from the anode to form Li-oxide at the interphase, vacancies were created on the Li-metal, causing anode structure amorphization near the Li-oxide phase and keeping the rest of the anode structure as BCC. Therefore, the interface was unstable because of the continuous Li-oxide and La-oxide formation and growth, which were more pronounced when increasing the external electric field.
机译:AB Initio分子动力学研究固态电解质Li _(0.29)La _(0.57)TiO _(3)和Li-Meta的电化学界面进行分析,以分析0的外部电场0的差异形成和演变,0.5,1.0和2.0 V?应用〜(?1)。从这种电化学稳定性分析中,得出结论,在电解质/阳极间相互作用中形成氧化锂(Li _(2)o)和氧化镧(La _(2)o o _(3))相。随着电场的增加,来自电解质的氧气通过Li-Metal阳极扩散,增加了与Li和La反应的电解质的深层晶体平面的o的量。预期Ti的强烈减少了他们的糟糕的电荷变化+3.5在宽容到+2.5在界面处。由于从阳极中丧失锂原子以在相位间形成锂氧化物,在Li-Malb上产生空位,使阳极结构在锂氧化物相附近并将其余的阳极结构保持为BCC。因此,由于连续的锂氧化物和氧化物形成和生长,界面不稳定,在增加外部电场时更加明显。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号