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Effect of Zn-Doping on the Phase Transition Behavior and Thermoelectric Transport Properties of Cu_2Se

机译:Zn掺杂对Cu_2SE相变行为和热电传输性能的影响

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We report on the phase transition behavior and thermoelectric transport properties of Zn-doped Cu_2Se. Cu_2Se is comprised of nontoxic, low-cost and abundant elements, and has been attracting attention because of its very high thermoelectric performance, ZT, at high temperatures. Many studies have reported enhanced ZT in impurity doped Cu_2Se, however, little is known about the effect of dopants on the phase transition behavior of Cu_2Se. In this study, we prepared (Cu_(1-x)Zn)_2Se (x = 0 ~ 0.03) compounds by spark plasma sintering, and investigated the phase transition behavior in terms of the temperature-dependent thermoelectric transport properties. Undoped Cu_2Se consists of monoclinic α-Cu_2Se and berzelianite at room temperature. However, the crystal structure of (Cu_(1-x)Zn_x)_2Se compounds is changed into a single phase of a-Cu_2Se with increasing Zn content. As the Zn content increased, electrical conductivity decreased and Seebeck coefficient increased due to the donor role of Zn. The phase transition temperatures of the compounds were characterized as a function of Zn content, based on the temperature-dependent electrical conductivities and Seebeck coefficients. The phase transition temperature was increased by increasing Zn content, and it was attributed to the disappearance of the berzelianite phase whose phase transition temperature is lower than that of α-Cu_2Se. Detailed effects of Zn-doping on both the phase transition behavior and thermoelectric transport properties were discussed.
机译:我们报道了Zn掺杂cu2se的相变行为和热电输运性质。cu2se是一种无毒、廉价、丰富的元素,由于其在高温下具有很高的热电性能ZT而备受关注。许多研究报道了杂质掺杂cu2se中ZT的增强,但对掺杂剂对cu2se相变行为的影响知之甚少。在本研究中,我们通过火花等离子体烧结制备了(Cu_1-x)Zn)2Se(x=0~0.03)化合物,并从温度相关的热电输运性质方面研究了其相变行为。室温下,未掺杂的cu2se由单斜α-cu2se和贝氏体组成。然而,随着Zn含量的增加,(Cu_1;(1-x)Zn_x)2Se化合物的晶体结构变为单相a-Cu_2Se。随着锌含量的增加,由于锌的施主作用,电导率降低,塞贝克系数增加。根据与温度相关的电导率和塞贝克系数,将化合物的相变温度表征为锌含量的函数。随着Zn含量的增加,相变温度升高,这是由于贝氏体相的消失,其相变温度低于α-cu2se。详细讨论了Zn掺杂对相变行为和热电输运性质的影响。

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