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调整 ZnS/ZnSe 体系的带隙:机械诱导自维持反应的固溶体。

Tailoring the Band Gap in the ZnS/ZnSe System: Solid Solutions by a Mechanically Induced Self-Sustaining Reaction.

机构信息

Instituto de Ciencia de Materiales de Sevilla (CSIC-US) , 41092 Sevilla , Spain.

Departamento de Química Inorgánica , Universidad de Sevilla , 41012 Sevilla , Spain.

出版信息

Inorg Chem. 2019 Feb 18;58(4):2565-2575. doi: 10.1021/acs.inorgchem.8b03183. Epub 2019 Jan 29.

Abstract

The complete ZnS Se solid solution was successfully obtained by the mechanochemical process denoted as a mechanically induced self-sustaining reaction. Excellent control of the chemical stoichiometry of the solid solution was possible by adjusting the atomic ratio of the starting Zn/S/Se elemental mixture subjected to milling. A mixture of both wurtzite-2H (hexagonal) and zinc blende (cubic) structures was always obtained, although for a similar milling time the proportion of the zinc blende structure increased with the Se content in the solid solution. However, wurtzite was the major phase for S-rich compositions when milling was stopped just after ignition. It was demonstrated that milling induces the wurtzite-to-zinc blende phase transition. The 8H hexagonal polytype was also observed in samples subjected to long milling times. Variation of the lattice parameters for both structures with the x value in the solid solution presented an excellent linearity, confirming the validity of Vegard's law. However, variation of the band-gap energy ( E) with x was not perfectly linear, and a small bowing parameter of 0.34 was obtained. It was possible to tune the E value between those of the end members of the solid solution in a continuous manner by adjusting the stoichiometry of the solid solution. The morphology and crystalline domain size can also be controlled by adjusting, in this case, the postignition milling time of the mechanochemical process.

摘要

通过机械化学过程(称为机械自维持反应)成功获得了完整的 ZnSSe 固溶体。通过调整经受研磨的起始 Zn/S/Se 元素混合物的原子比,可以对固溶体的化学计量比进行出色的控制。尽管对于类似的研磨时间,固溶体中 Se 含量的增加会导致立方闪锌矿(立方)结构的比例增加,但总是获得纤锌矿-2H(六方)和闪锌矿(立方)两种结构的混合物。然而,当在点火后立即停止研磨时,对于富 S 的组成,纤锌矿是主要相。已经证明研磨诱导纤锌矿到闪锌矿的相转变。在经受长时间研磨的样品中还观察到 8H 六方多型。两种结构的晶格参数随固溶体中 x 值的变化呈现出极好的线性,证实了维加德定律的有效性。然而,带隙能量(E)随 x 的变化并不完全呈线性,并且获得了 0.34 的小弯曲参数。通过调整固溶体的化学计量比,可以以连续的方式调节 E 值,使其介于固溶体的端元之间。通过调整机械化学过程的点火后研磨时间,还可以控制形态和结晶畴尺寸。

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