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首页> 外文期刊>Philosophical magazine: structure and properties of condensed matter >Thermoelectric properties of stannite-phase CuZn(2)AS(4) (CZAS; A=Al, Ga and In) nanocrystals for solar energy conversion applications
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Thermoelectric properties of stannite-phase CuZn(2)AS(4) (CZAS; A=Al, Ga and In) nanocrystals for solar energy conversion applications

机译:锡石相CuZn(2)AS(4)(CZAS; A = Al,Ga和In)纳米晶体的热电性质,用于太阳能转换应用

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The current study aimed to comprehensively investigate structural, electronic, optical and transport properties of quaternary semiconductor CuZn(2)AS(4) (CZAS; A= Al, Ga and In) nanocrystals (NCs). Based on energy considerations, the stannite structure (I-42m; No. 121) is found to be more stable than the kesterite (I-4; No. 82) and wurtzite (P6(3)mc; No. 186) type structures. By means of hybrid functional calculations, these nanocrystals have direct band gap of 0.81-1.71 eV with a high absorption coefficient of >10(4) cm(-1), which are well-suited for use in solar energy-conversion applications. Some of the latest advances in applications of these nanocrystals in thermoelectric applications are also highlighted in the current study. It is observed that transport coefficients of these materials are found to be nearly direction independent and isotropic. All three samples are p-type conductors at room temperature. Especially, the Seebeck coefficient of CuZn2AlS4 is even larger than that of CuZn2GaS4 and CuZn2InS4 under the studied carrier concentration and temperature region. The maximum figure of merit (ZT) reaches 0.982 (0.977), 0.984 (0.974) and 0.53 (0.955) for p-type (n-type) CuZn2AlS4, CuZn2GaS4, and CuZn2InS4, respectively, at 300 K. The high Seebeck coefficients, high figure of merit and low thermal conductivities make these systems good candidates for high-efficiency thermoelectric conversion applications.
机译:当前的研究旨在全面研究四元半导体CuZn(2)AS(4)(CZAS; A = Al,Ga和In)纳米晶体(NCs)的结构,电子,光学和传输性质。基于能量的考虑,发现亚锡矿结构(I-42m; No。121)比kesterite(I-4; No。82)和纤锌矿(P6(3)mc; No。186)类型的结构更稳定。 。通过混合功能计算,这些纳米晶体的直接带隙为0.81-1.71 eV,吸收系数> 10(4)cm(-1),非常适合用于太阳能转换应用。本研究还重点介绍了这些纳米晶体在热电应用中的一些最新进展。可以发现,发现这些材料的传输系数几乎与方向无关且各向同性。所有三个样品在室温下均为p型导体。特别是,在研究的载流子浓度和温度范围内,CuZn2AlS4的塞贝克系数甚至大于CuZn2GaS4和CuZn2InS4的塞贝克系数。 p型(n型)CuZn2AlS4,CuZn2GaS4和CuZn2InS4的最大品质因数(ZT)分别在300 K时达到0.982(0.977),0.984(0.974)和0.53(0.955)。高塞贝克系数高品质因数和低热导率使这些系统成为高效热电转换应用的理想之选。

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