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RADICAL-ION MELTS OF ALUMINIUM, GALLIUM AND SULFUR HALIDES FOR NOVEL POWER SOURCES

机译:用于新型电源的铝,镓和硫卤化物的自由基离子熔体

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In the phase diagrams of the binary systems: aluminium chloride (bromide) - sulfur chloride (bromide) and gallium chloride (bromide) - sulfur chloride (bromide), incongruently melting 2:1, 1:1 and 1:2 compounds have been revealed. The liquid state region is -20 to +200 °C; electrical conductivity of the melt is 0.1-0.01 Ω~(-1) cm~(-1). Paramagnetic species with g_1 = 2.014 and g_2 = 2.038 have been detected, the latter being assigned as a sulfur-containing radical. The extreme values in the composition-property (electrical conductivity, viscosity, molar volume, EPR signal intensity) diagrams are in the region of the 2:1 and 1:1 compounds and indicate their existence in the liquid phase. The fact that charge and free electron belong to the same species follows from the simultaneous decrease in EMF and EPR signal intensity in a discharge cell based on the aluminium systems, and corroborates the radical-ion nature of the melts. The aluminium(Ⅲ) chloride system was used as cathodic material for cells of two types.
机译:在二元体系的相图:氯化铝(溴) - 硫酰氯(溴)和氯化镓(溴) - 硫酰氯(溴),固液异熔融2:1,1:1和1:2个的化合物已被发现。液体状态区为-20〜200℃;熔体的导电率是0.1-0.01Ω〜(-1)厘米〜(-1)。已经检测= 2.014和G_2 = 2.038与G_1顺磁物质,后者被分配作为含硫基团。在组合物中,属性极值(导电性,粘度,摩尔体积,EPR信号强度)图是在2的区域:1和1:1的化合物与指示其在液相中存在。该充电和自由电子属于相同物种从基于所述铝系统的放电单元在EMF和EPR信号强度的同时降低如下,并且证实了熔体的自由基离子性质的事实。铝(Ⅲ)氯化物系统被用作两种类型的细胞阴极材料。

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