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首页> 外文期刊>Angewandte Chemie >Fast Sodium-Ion Conductivity in Supertetrahedral Phosphidosilicates
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Fast Sodium-Ion Conductivity in Supertetrahedral Phosphidosilicates

机译:超它磷酸盐中的快速离子电导率

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摘要

Fast sodium-ion conductors are key components of Na-based all-solid-state batteries which hold promise for large-scale storage of electrical power. We report the synthesis, crystal-structure determination, and Na+-ion conductivities of six new Na-ion conductors, the phosphidosilicates Na19Si13P25, Na23Si19P33, Na23Si28P45, Na23Si37P57, LT-NaSi2P3 and HT-NaSi2P3, based entirely on earth-abundant elements. They have SiP4 tetrahedra assembled interpenetrating networks of T3 to T5 supertetrahedral clusters and can be hierarchically assigned to sphalerite- or diamond-type structures. Na-23 solid-state NMR spectra and geometrical pathway analysis show Na+-ion mobility between the supertetrahedral cluster networks. Electrochemical impedance spectroscopy shows Na+-ion conductivities up to sigma(Na+) = 4 x 10(-4) Scm(-1). The conductivities increase with the size of the supertetrahedral clusters through dilution of Na+-ions as the charge density of the anionic networks decreases.
机译:快速钠离子导体是Na基全固态电池的关键部件,其占据了电力大规模存储的承担。 我们报告了六种新的Na离子导体,磷酸盐硅酸盐Na19Si13p25,Na23Si19P33,Na23Si28P3,LT-NASI2P3和HT-NASI2P3的合成,晶体结构测定和Na +接收导电性,完全基于地球丰富的元素。 它们具有SIP4 Tetrahedra组装T3至T5超级去型簇的互穿网络,并且可以分级分配给闪锌矿或钻石型结构。 Na-23固态NMR光谱和几何通路分析显示SuperTeTrahreadral集群网络之间的Na +Ion移动性。 电化学阻抗光谱显示Na +接收导电率直至Sigma(Na +)= 4×10(-4)SCM(-1)。 随着阴离子网络的电荷密度减小的电荷密度降低,电导率随着SuperteTreathral簇的尺寸而增加。

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