首页> 外文期刊>Journal of Science: Advanced Materials and Devices >Enhancement of electrical properties of NASICON-type solid electrolytes (LiSn 2P 3O 12) via aluminium substitution
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Enhancement of electrical properties of NASICON-type solid electrolytes (LiSn 2P 3O 12) via aluminium substitution

机译:增强Nasicon型固体电解质的电性能(LISN 2 P 3 O 12 )通过铝合金取代

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NASICON-type electrolyte is one of the possible solid-state electrolytes to be employed in solid-state energy devices. The Li1+xAlxSn2-xP3O12NASICON-based solid electrolyte materials were fabricated using a mechanochemical milling method at 650?°C for 8?h, wherexis from 0 to 0.8. From the X-ray diffraction (XRD) analysis, the crystallographic phases of the parent material and the partial aluminium (Al) substituted one have been verified. Site occupancy factor (s.o.f) studies from the XRD data refinement illustrate that the material withx?=?0.4 has a stoichiometry in good agreement with the nominal tin (Sn):aluminium (Al) ratio which is 8:2. Field emission scanning electron microscopy (FESEM) was conducted to study the surface morphological properties, revealing the homogenous single-crystalline structure in the sample withx?=?0.4, which consists of particles of the smallest crystallite size of 3.77?nm among the samples investigated. The process of partial Al-substitution was further confirmed by the energy dispersive X-ray (EDX). The material withx?=?0.4 possesses the maximum conductivity value of 7.57?×?10?6?S·cm?1, which was improved up to 3.79?×?10?5?S·cm?1?by a silver paint treatment. The correlation between the microstructure and the ionic conductivity has been explained via the EDX and impedance analysis results. Ions were found to be the main charge carriers from the transference number analysis (TNM). Variation of relaxation in the dielectric study verifies that Li1+xAlxSn2-xP3O12obeys a non-Debye characteristic. Patterns of the dielectric results strengthened the trend of ionic conductivity.
机译:Nasicon型电解质是在固态能量装置中采用的可能的固态电解质之一。使用在650℃的机械化学铣削方法在650℃下以8Ω·℃,XIS为0至0.8,制造基于Li1 + XALXSN2-XP3O12NASICON的固体电解质材料。从X射线衍射(XRD)分析中,已经验证了母体材料和部分铝(Al)取代的晶体阶段。来自XRD数据细化的现场占用因子(S.O.F)研究表明,材料有x?= 0.4与标称锡(Sn)的良好协议具有化学计量:铝(Al)比例为8:2。进行现场发射扫描电子显微镜(FeSEM)以研究表面形态学性质,揭示样品中的均匀单晶结构,其中包含最小晶体尺寸的颗粒3.77Ω·纳米的粒子。通过能量分散X射线(EDX)进一步证实了部分Al取代的过程。含有x的材料?= 0.4具有7.57的最大电导率值为7.57?×10?10?·厘米?1,其·厘米?1,其高达3.79?×10?5?厘米?1?通过银色涂料治疗。通过EDX和阻抗分析结果,已经解释了微观结构与离子电导率之间的相关性。发现离子是转移数分析(TNM)的主电荷载体。电介质研究中的放松的变化验证了Li1 + XalxSn2-XP3O12Obe的非德语特性。介电结果的图案强化了离子电导率的趋势。

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