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CuZnSnS纳米晶体的拉曼光谱表征:声子限制效应与Cu-S相的形成

Raman characterization of CuZnSnS nanocrystals: phonon confinement effect and formation of Cu S phases.

作者信息

Havryliuk Ye, Valakh M Ya, Dzhagan V, Greshchuk O, Yukhymchuk V, Raevskaya A, Stroyuk O, Selyshchev O, Gaponik N, Zahn D R T

机构信息

V. E. Lashkaryov Institute of Semiconductor Physics, Nat. Acad. of Sci. of Ukraine 03028 Kyiv Ukraine.

L. V. Pysarzhevsky Institute of Physical Chemistry, Nat. Acad. of Sci. of Ukraine 03028 Kyiv Ukraine

出版信息

RSC Adv. 2018 Aug 31;8(54):30736-30746. doi: 10.1039/c8ra05390a. eCollection 2018 Aug 30.

Abstract

A Raman spectroscopic study of CuZnSnS (CZTS) nanocrystals (NCs) produced by a "green" synthesis in aqueous solutions is reported. Size-selected CZTS NCs reveal phonon confinement that manifests itself in an upward shift of the main phonon peak by about 3-4 cm by varying the NC diameter from 3 to 2 nm. A non-monotonous shift and narrowing of the main peak are attributed to the special shape of the phonon dispersion in this material. Moreover, the method of sample preparation, the nature of the supporting substrate and the photoexcitation regime are found to crucially influence the Raman spectra of the CZTS samples. Particularly, the possible oxidation and hydrolysis of CZTS NCs with the concomitant formation of a Cu-S phase are systematically investigated. The nature of the film support is found to strongly affect the amount of admixture copper sulfide phases with the Cu S/CuS content being the highest for oxidized silicon and glass and notably lower for ITO and even less for gold supports. The effect is assumed to originate from the different hydrophilicity of the supporting surfaces, resulting in a different morphology and surface area of the NC film exposed to the atmosphere, as well as the degree of the NC oxidation/hydrolysis. The amount of copper sulfide increases with the laser power. This effect is interpreted as a result of photochemical/photocatalytic transformations of the CZTS NCs.

摘要

报道了一项关于通过水溶液中的“绿色”合成法制备的CuZnSnS(CZTS)纳米晶体(NCs)的拉曼光谱研究。尺寸选择的CZTS NCs显示出声子限制,通过将NC直径从3纳米变化到2纳米,主声子峰向上移动约3 - 4厘米来体现。主峰的非单调移动和变窄归因于该材料中声子色散的特殊形状。此外,发现样品制备方法、支撑衬底的性质和光激发条件对CZTS样品的拉曼光谱有至关重要的影响。特别地,系统研究了CZTS NCs可能的氧化和水解以及伴随形成的Cu - S相。发现薄膜支撑体的性质强烈影响混合硫化铜相的量,对于氧化硅和玻璃,Cu₂S/CuS含量最高,对于ITO则明显较低,对于金支撑体更低。假定这种效应源于支撑表面不同的亲水性,导致暴露于大气中的NC薄膜具有不同的形态和表面积,以及NC氧化/水解的程度。硫化铜的量随激光功率增加。这种效应被解释为CZTS NCs光化学/光催化转变的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d88a/9085493/92bc6eb2ce24/c8ra05390a-f1.jpg

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