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一种通过改进的两相法制备多元半导体纳米晶的简便通用方法。

A facile and general approach to polynary semiconductor nanocrystals via a modified two-phase method.

机构信息

Key Laboratory of Excited State Processes, Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Changchun, People's Republic of China.

出版信息

Nanotechnology. 2011 Jun 17;22(24):245605. doi: 10.1088/0957-4484/22/24/245605. Epub 2011 Apr 21.

Abstract

Cu(2)ZnSnS(4) nanocrystals were synthesized through a modified two-phase method and characterized with transmission electron microscopy (TEM), powder x-ray diffraction (XRD) and UV-vis spectroscopy. Inorganic metal salts were dissolved in the polar solvent triethylene glycol (TEG) and then transferred into the non-polar solvent 1-octadecene (ODE) by forming metal complexes between metal ions and octadecylamine (ODA). Since nucleation and growth occur in the single phase of the ODE solution, nanocrystals could be produced with qualities similar to those obtained through the hot-injection route. Balancing the reactivity of the metal precursors is a key factor in producing nanocrystals of a single crystalline phase. We found that increasing the reaction temperature increases the reactivity of each of the metal precursors by differing amounts, thus providing the necessary flexibility for obtaining a balanced reactivity that produces the desired product. The versatility of this synthesis strategy was demonstrated by extending it to the production of other polynary nanocrystals such as binary (CuS), ternary (CuInS(2)) and pentanary (Cu(2 - x)Ag(x)ZnSnS(4)) nanocrystals. This method is considered as a green synthesis route due to the use of inorganic metal salts as precursors, smaller amounts of coordinating solvent, shorter reaction time and simpler post-reaction treatment.

摘要

Cu2ZnSnS4 纳米晶通过改进的双相法合成,并通过透射电子显微镜(TEM)、粉末 X 射线衍射(XRD)和紫外可见光谱进行了表征。无机金属盐溶解在极性溶剂三甘醇(TEG)中,然后通过金属离子与十八胺(ODA)之间形成金属配合物转移到非极性溶剂 1-十八烯(ODE)中。由于成核和生长发生在 ODE 溶液的单相中,因此可以生产出与通过热注入路线获得的质量相似的纳米晶。平衡金属前体的反应性是生产单晶相纳米晶的关键因素。我们发现,通过提高反应温度,每种金属前体的反应性都会以不同的量增加,从而为获得所需产物提供了必要的灵活性,以获得平衡的反应性。通过将其扩展到生产其他多元纳米晶,如二元(CuS)、三元(CuInS2)和五元(Cu2-xAgxZnSnS4)纳米晶,证明了这种合成策略的多功能性。由于使用无机金属盐作为前体,该方法被认为是一种绿色合成路线,其用量较小配位溶剂、较短的反应时间和更简单的后反应处理。

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