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对NaGdSiO的重新研究:一种对固态钠电池而言可能比钠β-氧化铝更好的固体电解质。

Reinvestigation of NaGdSiO: A Potentially Better Solid Electrolyte than Sodium β Alumina for Solid-State Sodium Batteries.

作者信息

Michalak Anna, Behara Santosh, M Anji Reddy

机构信息

IMPACT Energy Storage Laboratory, Faculty of Science and Engineering, Swansea University, Fabian Way, Swansea SA1 8EN, U.K.

出版信息

ACS Appl Mater Interfaces. 2024 Feb 14;16(6):7112-7118. doi: 10.1021/acsami.3c16153. Epub 2024 Jan 31.

Abstract

Developing high-performing solid electrolytes that could replace flammable organic liquid electrolytes is vital in designing safer solid-state batteries. Among the sodium-ion (Na) conducting solid electrolytes, Na-β″-alumina (BASE) is highly regarded for its employment in solid-state battery applications due to its high ionic conductivity and electrochemical stability. BASE has long been employed in commercial Na-NiCl and Na-S batteries. However, the synthesis of highly conductive BASE is energy-intensive, involving elevated temperatures for sintering and the incorporation of stabilizing additives. Additionally, BASE is highly sensitive to humidity, which limits its applications. Hence, there is an intense search to identify suitable high-performing solid electrolytes that could replace BASE. In this context, we reinvestigated NaGdSiO (NGS) and demonstrated that phase pure NGS could be synthesized by a simple solid-state reaction. Beyond a high ionic conductivity of 1.9 × 10 S cm at 30 °C (1.5 × 10 S cm for BASE), NGS exhibited high chemical as well as electrochemical stability, lower interfacial resistance, lower deposition and stripping potential, and higher short-circuiting current, designating NGS as a better solid electrolyte than BASE.

摘要

开发能够替代易燃有机液体电解质的高性能固体电解质对于设计更安全的固态电池至关重要。在钠离子(Na)传导固体电解质中,Na-β″-氧化铝(BASE)因其高离子电导率和电化学稳定性而在固态电池应用中备受青睐。BASE长期以来一直应用于商业Na-NiCl和Na-S电池。然而,高导电率BASE的合成能耗大,涉及高温烧结以及添加稳定添加剂。此外,BASE对湿度高度敏感,这限制了其应用。因此,人们一直在积极寻找能够替代BASE的合适高性能固体电解质。在此背景下,我们重新研究了NaGdSiO(NGS),并证明通过简单的固态反应可以合成纯相NGS。除了在30°C时具有1.9×10 S cm的高离子电导率(BASE为1.5×10 S cm)外,NGS还表现出高化学稳定性和电化学稳定性、更低的界面电阻、更低的沉积和剥离电位以及更高的短路电流,表明NGS是一种比BASE更好的固体电解质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b368/10875635/700755240f22/am3c16153_0001.jpg

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