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Lithium intercalation into the tetradymite-type selenides Bi2-xInxSe3

机译:锂嵌入四叠氮化物型硒化物Bi2-xInxSe3中

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Electrochemical intercalation of Li+ ions into Bi2-xInxSe3 crystals (x = 0.0, 0.01, 0.22 and 0.46) has been studied. According to the cyclic voltammograms obtained during the first charge-discharge cycle, the amount C of intercalated Li+ ions depends on the concentration x of In in the crystals; maximum intercalation was observed for the crystals with x=0.01. The observed dependence of C = f(x) is similar to the concentration dependences of the Hall coefficient, electric conductivity and Seebeck coefficient, that is to the dependence of the concentration of free charge carriers on the concentration of In in the crystals. From an analysis of the relations between intercalation properties and the nature of point defects in Bi2-xInxSe3 crystals it was concluded that changes in the concentration of Se vacancies V-Se(..) are responsible for the observed changes in the intercalation properties of the: Bi2-xInxSe3 crystals.
机译:研究了Li +离子在Bi2-xInxSe3晶体中的电化学嵌入(x = 0.0、0.01、0.22和0.46)。根据在第一次充放电循环中获得的循环伏安图,嵌入的Li +离子的量C取决于晶体中In的浓度x;对于x = 0.01的晶体观察到最大嵌入。所观察到的C = f(x)的依赖性类似于霍尔系数,电导率和塞贝克系数的浓度依赖性,也就是自由电荷载流子浓度与晶体中In浓度的依赖性。通过分析Bi2-xInxSe3晶体中插入性质与点缺陷性质之间的关系,可以得出结论,硒空位浓度V-Se(..)的变化是所观察到的Bi的插入性质变化的原因。 :Bi2-xInxSe3晶体。

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