首页> 外文会议>International Russian-Chinese Symposium "New Materials and Technologies" >Sol-gel synthesis and determination of optimal sintering conditions of the Li_(6.75)La_3Zr_(1.75)Nb_(0.25)O_(12) solid electrolyte
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Sol-gel synthesis and determination of optimal sintering conditions of the Li_(6.75)La_3Zr_(1.75)Nb_(0.25)O_(12) solid electrolyte

机译:Li_(6.75)LA_3ZR_(1.75)NB_(0.25)O_(12)固体电解质的Li_(6.75)LA_3ZR_(1.75)的最佳烧结条件的合成和测定

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Solid electrolytes are widely used in electrochemical devices. Among these materials, electrolytes with the lithium-ion conductivity can be used in high-energy lithium and lithium-ion power sources. The perspective Li_(6.75)La_3Zr_(1.75)Nb_(0.25)O_(12) solid electrolyte was synthesized by modified sol-gel synthesis method using the sparingly soluble Nb_2O_5 as one of the initial compounds. The influence of pressure and final sintering temperature on phase composition, density and lithium-ion conductivity was studied. Solid electrolyte obtained at 1150°C was single phase and had a cubic structure with the space group Ia-3d. Thus in the presented work, the cubic modification of Li_(6.75)La_3Zr_(1.75)Nb_(0.25)O_(12) was obtained by thermal treatment for 1 h at 1150°C (versus 36 h at 1200°C in the literature). Moreover at this temperature the samples had the highest density and total lithium-ion conductivity (3.9·10~(-5) S cm~(-1) at 25°C). According to the SEM study ceramic samples have a dense structure with a particle size ~1-3 μm. Solid electrolyte was also obtained by isostatic pressing at a pressure of 500 MPa but the values of density and total lithium-ion conductivity were comparable with that of the samples compressed statically.
机译:固体电解质广泛用于电化学装置中。在这些材料中,具有锂离子电导率的电解质可用于高能量锂和锂离子电源。通过改性溶解的Nb_2O_5作为初始化合物之一,通过改性溶解的Nb_2O_5通过改性溶胶 - 凝胶合成方法合成了透视Li_(6.75)La_3Zr_(1.75)Nb_(0.25)O_(12)固体电解质。研究了压力和最终烧结温度对相组成,密度和锂离子传导性的影响。在1150℃下获得的固体电解质是单相并且具有与空间组IA-3D的立方结构。因此,在所呈现的工作中,通过在1150℃(在文献中为1200°C时,通过热处理1小时获得Li_(6.75)La_3Zr_(1.75)Nb_(0.25)O_(12)的立方修饰。 。此外,在该温度下,样品的密度最高和总锂离子电导率(3.9·10〜(-5)Cm〜(-1)在25℃))。根据SEM,研究陶瓷样品具有粒径〜1-3μm的致密结构。通过在500MPa的压力下的等静压下,固体电解质也得到了固体电解质,但密度值和总锂离子传导率的值与静态压缩的样品的值相当。

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