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Structural studies of NASICON material of different compositions by sol-gel method

机译:溶胶-凝胶法研究不同组成的NASICON材料的结构

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The NASICON (Na_(1+x)Zr_2Si_xP_(3-x)O_(12)) is a well known solid electrolyte material with high ionic conductivity. The ion conductivity can be improved by modifying the structure. The NASICON powders with different compositions (by varying x) have been prepared by sol-gel method. The structural and conductivity measurements have been done by XRD, complex plane impedance analysis and electrochemical cell method. The results indicate that the ac conductivity and Na~+ ion selectivity are higher for x = 2.05 as compared to other compositions. The enhancement of Na~+ ion conductivity for x = 2.05 has been attributed to modifications in the orientations of tetrahedral structures which lead to change in the bottleneck size. The results have been confirmed by X-ray diffraction (XRD).
机译:NASICON(Na_(1 + x)Zr_2Si_xP_(3-x)O_(12))是众所周知的具有高离子电导率的固体电解质材料。可以通过改变结构来改善离子电导率。通过溶胶-凝胶法制备了具有不同组成(通过改变x)的NASICON粉末。结构和电导率测量已通过XRD,复平面阻抗分析和电化学电池法完成。结果表明,与其他成分相比,x = 2.05时,交流电导率和Na〜+离子选择性更高。 x = 2.05时Na +离子电导率的提高归因于四面体结构取向的改变,这导致了瓶颈尺寸的改变。通过X射线衍射(XRD)证实了该结果。

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