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首页> 外文期刊>Angewandte Chemie >Abnormal Ionic Conductivities in Halide NaBi3O4Cl2 Induced by Absorbing Water and a Derived Oxhydryl Group
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Abnormal Ionic Conductivities in Halide NaBi3O4Cl2 Induced by Absorbing Water and a Derived Oxhydryl Group

机译:吸收水和衍生的Oxhydryl基团诱导的卤化物Nabi3O4Cl2异常离子电导率

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摘要

In hunting for safe and cost-effective materials for post-Li-ion energy storage, the design and synthesis of high-performance solid electrolytes (SEs) for all-solid-state batteries are bottlenecks. Many issues associated with chemical stability during processing and storage and use of the SEs in ambient conditions need to be addressed. Now, the effect of water as well as oxyhdryl group ((OH)-O-.) on NaBi3O4Cl2 are investigated by evaluating ionic conductivity. The presence of water and (OH)-O-. results in an increase in ionic conductivity of NaBi3O4Cl2 owing to diffusion of H2O into NaBi3O4Cl2, partially forming binding (OH)-O-. through oxygen vacancy repairing. Ab initio calculations reveal that the electrons significantly accumulate around (OH)-O-. and induce a more negative charge center, which can promote Na+ hopping. This finding is fundamental for understanding the essential role of H2O in halide-based SEs and provides possible roles in designing water-insensitive SEs through control of defects.
机译:在寻找后锂离子储能的安全和经济高效的材料中,全固态电池的高性能固体电解质(SES)的设计和合成是瓶颈。需要解决与在环境条件下处理和存储和使用SES期间化学稳定性相关的许多问题。现在,通过评价离子电导率研究水以及氧气和氧基((OH)-O-。)对NaBI3O4Cl2的影响。水和(oh)-o-。导致Nabi3O 4 Cl2的离子电导率增加,由于H 2 O扩散到NaBi3O 4 Cl 2中,部分形成结合(OH)-O-。通过氧气空位修复。 AB Initio计算表明,电子显着​​累积(OH)-O-。并诱导更加负电荷中心,可以促进Na +跳跃。这种发现是理解H2O在卤化物的基础上的基本作用的基础,并通过控制缺陷来提供在设计水不敏感SES中的可能作用。

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