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首页> 外文期刊>Solid state ionics >Ionic conduction and dielectric relaxation in Ag+/Na+ ion-exchanged aluminosilicate glasses: mixed mobile ion effect and KWW relaxation
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Ionic conduction and dielectric relaxation in Ag+/Na+ ion-exchanged aluminosilicate glasses: mixed mobile ion effect and KWW relaxation

机译:Ag + / Na +离子交换的硅铝酸盐玻璃中的离子传导和介电弛豫:混合移动离子效应和KWW弛豫

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Ag+/Na+ ion-exchanged aluminosilicate glasses with uniform concentration profiles were prepared, and their electrical conductivities were investigated as functions of the ion-exchange ratio and the initial glass compositions. In the case of the ion-exchanged glasses of x20Ag(2)O-(1-x)20Na(2)O-10Al(2)O(3)-7OSiO(2) in mol%, the conductivity, a, and its activation energy, E-sigma, showed a minimum and a maximum at the same ion-exchange ratio x=0.3, respectively, and the mixed mobile ion effect (MMIE) was observed. The fully ion-exchanged sample attained sigma=3.5 x 10(-5) S/cm at 200 degreesC, which was 1.5 orders of magnitude larger than that of initial glass. In the case of x25Ag(2)O-(1-x)25Na(2)O-25Al(2)O(3)-50SiO(2), the mixed mobile ion effect was also observed at x=0.5. The maximum conductivity of 2x10(-4) S/cm, at 200 degreesC was obtained in the fully ion-exchanged glass sample. The electric relaxation analysis was also conducted on both systems, and Kohlrausch-Williams-Watts (KWW) fractional exponent beta was obtained as a function of x. The decrease of beta was observed near x approximate to 0.3 in the former system, while that of the later system was independent of the ion-exchange ratio. Based on the structural analysis results, the observed behaviors were investigated from the point of view of the occupation of Ag+ ions on the non-bridging oxygen-site (NBO-site) and the charge compensation-site (CC-site) of AlO4 tetrahedral unit. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 37]
机译:制备了具有均匀浓度分布的Ag + / Na +离子交换铝硅酸盐玻璃,并研究了其电导率与离子交换率和初始玻璃组成的关系。对于以摩尔%计的x20Ag(2)O-(1-x)20Na(2)O-10Al(2)O(3)-7OSiO(2)离子交换玻璃,电导率,a和在相同的离子交换比x = 0.3时,其活化能E-sigma分别显示出最小值和最大值,并且观察到混合移动离子效应(MMIE)。经过完全离子交换的样品在200℃下达到sigma = 3.5 x 10(-5)S / cm,比初始玻璃大1.5个数量级。在x25Ag(2)O-(1-x)25Na(2)O-25Al(2)O(3)-50SiO(2)的情况下,在x = 0.5处也观察到混合移动离子效应。在完全离子交换的玻璃样品中,在200摄氏度下获得的最大电导率为2x10(-4)S / cm。还在这两个系统上进行了电弛豫分析,并且获得了x的函数Kohlrausch-Williams-Watts(KWW)分数指数β。在前者系统中,观察到β的减小接近x约0.3,而后一种系统的β减小与离子交换率无关。根据结构分析结果,从在四面体AlO4的非桥接氧位点(NBO位点)和电荷补偿位点(CC位点)上Ag +离子的占据的角度研究了观察到的行为。单元。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:37]

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