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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Fast microwave-assisted synthesis of Li-stuffed garnets and insights into Li diffusion from muon spin spectroscopy
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Fast microwave-assisted synthesis of Li-stuffed garnets and insights into Li diffusion from muon spin spectroscopy

机译:微波辅助锂填充石榴石的快速合成以及从介子自旋光谱学中了解锂的扩散

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Lithium-stuffed garnets attract huge attention due to their outstanding potential as solid-state electrolytes for lithium batteries. However, there exists a persistent challenge in the reliable synthesis of these complex functional oxides together with a lack of complete understanding of the lithium-ion diffusion mechanisms in these important materials. Addressing these issues is critical to realizing the application of garnet materials as electrolytes in all solid-state lithium-ion batteries. In this work, a cubic phase garnet of nominal composition Li6.5Al0.25La2.92Zr2O12 is synthesized through a microwave-assisted solid-state route for the first time, reducing considerably the reaction times and heating temperatures. Lithium-ion diffusion behavior is investigated by electrochemical impedance spectroscopy (EIS) and state-of-art muon spin relaxation (mSR) spectroscopy, displaying activation energies of 0.55 +/- 0.03 eV and 0.19 +/- 0.01 eV respectively. This difference arises from the high inter-grain resistance, which contributes to the total resistance in EIS measurements. In contrast, mSR acts as a local probe providing insights on the order of the lattice, giving an estimated value of 4.62 x 10(-11) cm(2) s(-1) for the lithium diffusion coefficient. These results demonstrate the potential of this lithium-stuffed garnet as a solid-state electrolyte for all-solid state lithium-ion batteries, an area of growing interest in the energy storage community.
机译:填充锂的石榴石由于其作为锂电池用固态电解质的巨大潜力而​​备受关注。然而,在这些复杂功能性氧化物的可靠合成中,以及对这些重要材料中的锂离子扩散机理缺乏完全的理解方面,一直存在挑战。解决这些问题对于将石榴石材料作为电解质应用于所有固态锂离子电池至关重要。在这项工作中,首次通过微波辅助固态路线合成了标称成分为Li6.5Al0.25La2.92Zr2O12的立方相石榴石,从而大大减少了反应时间和加热温度。锂离子的扩散行为通过电化学阻抗谱(EIS)和最新的介子自旋弛豫(mSR)光谱进行了研究,分别显示出0.55 +/- 0.03 eV和0.19 +/- 0.01 eV的活化能。这种差异是由较高的晶粒间电阻引起的,该电阻有助于EIS测量中的总电阻。相反,mSR充当局部探针,可提供关于晶格顺序的见解,从而得出锂扩散系数的估计值为4.62 x 10(-11)cm(2)s(-1)。这些结果证明了这种填充锂的石榴石作为全固态锂离子电池的固态电解质的潜力,这在能量存储领域中越来越引起人们的关注。

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