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Study of ion transport behavior in a mechanochemically synthesized silver halide mixed composite system: [0.75 AgI:0.25 AgCl]

机译:机械化学合成卤化银混合复合体系中离子传输行为的研究:[0.75 AGI:0.25 AgCl]

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摘要

Ion transport behavior in a mechanochemically synthesized silver halide mixed composite has been investigated. AgI and AgCl, in 75: 25 mol. wt. (%) ratio, has been prepared by high energy ball milling for different milling times viz. 5, 10, 20, 30, 40, and 50 h as well as by simple physical mixing (referred to as zero hour milling). The room temperature conductivity has been evaluated as a function of milling time. The conductivity increased initially with increasing milling time, then decreased. The increase in conductivity has been attributed to the increased degree of amorphosity in the sample as a consequence of high energy ball milling. The 30-hour milled sample exhibited highest conductivity with an enhancement of more an order of magnitude from that of zero hour milled sample. To explain the ion transport mechanism in the optimum conducting sample, other basic ionic parameters viz. ionic mobility (μ), mobile ion concentration (n), ionic transference number (t_(ion)) etc. have also been determined. The materials and structural properties have been characterized using XRD, FTIR, and DSC techniques. Using the optimum conducting sample as electrolyte, all-solid-state battery has been fabricated having cell configuration: Ag (anode) // (0.75 AgI:0.25AgCl) // C + I~2 + Electrolyte (cathode), and the cell performance has been studied under varying load conditions.
机译:研究了机械化学合成卤化银混合复合材料中的离子传输行为。 AGI和AGCL,75:25 mol。 wt。 (%)比率,通过高能球磨制备用于不同的铣削时间viz。 5,10,20,30,40和50h以及通过简单的物理混合(称为零小时铣削)。作为研磨时间的函数评估了室温电导率。电导率最初增加随着铣削时间的增加,然后减少。导电性的增加归因于样本中的多孔程度增加,这是高能球磨的结果。 30小时研磨的样品表现出最高的导电性,从零小时碾磨样品的增加,增加了更多程度。为了在最佳导电样品中解释离子传输机制,其他基本离子参数viz。也确定了离子迁移率(μ),移动离子浓度(N),离子转移数(T_(离子))等。使用XRD,FTIR和DSC技术表征了材料和结构性。使用最佳导电样品作为电解质,全固态电池已制造具有电池构型:Ag(阳极)//(0.75AGI:0.25AgCl)// C + I〜2 +电解质(阴极)和细胞在不同的负载条件下研究了性能。

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