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Insights into Crystal Structure and Diffusion of Biphasic Na2Zn2TeO6

机译:深层晶体结构和双相Na2Zn2teo6的洞察洞察

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The layered oxide Na2Zn2TeO6 is a fast Na+ ion conductor and a suitable candidate for application as a solid-state electrolyte. We present a detailed study on how synthesis temperature and Na-content affect the crystal structure and thus the Na+ ion conductivity of Na2Zn2TeO6. Furthermore, we report for the first time an O'3-type phase for Na2Zn2TeO6. At a synthesis temperature of 900 degrees C, we obtain a pure P2-type phase, providing peak performance in Na+ ion conductivity. Synthesis temperatures lower than 900 degrees C produce a series of mixed P2 and O'3-type phases. The O'3 structure can only be obtained as a pure phase by substituting Li on the Zn-sites to increase the Na-content. Thorough analysis of synchrotron data combined with computational modeling indicates that Li enters the Zn sites and, consequently, the amount of Na in the structure increases to balance the charge according to the formula Na2+xZn2-xLixTeO6 (x = 0.2-0.5). Impedance spectroscopy and computational modeling confirm that reducing the amount of the O'3-type phase enhances the Na+ ion mobility.
机译:层状氧化物Na2Zn2TeO6是快速Na +离子导体和适用于固态电解质的合适候选物。我们介绍了合成温度和Na含量如何影响晶体结构的详细研究,从而纳入Na2Zn2TeO6的Na +离子电导率。此外,我们首次报告NA2ZN2TEO6的O'3型阶段。在900℃的合成温度下,我们获得纯P2型相,在Na +离子电导率下提供峰值性能。合成温度低于900℃,产生一系列混合P2和O'3型相。 o'3结构只能通过在Zn-位点上取代Li来获得作为纯相以增加Na含量。与计算建模结合的同步rotron数据的彻底分析表明LI进入Zn位点,因此,根据式Na2 + XZN2-XLixteO6(X = 0.2-0.5),结构中NA的量增加以平衡电荷。阻抗光谱和计算建模证实,降低O'3型相的量增强了Na +离子迁移率。

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