Health Research Institute, National Institute of Advanced Industrial Science and Technology, Midorigaoka, Ikeda-city, Osaka, 563-8577, Japan; School of Material Science and Engineering, University of Jinan, 250022, Jinan, People's Republic of China.
Luminescence. 2013 Sep-Oct;28(5):713-8. doi: 10.1002/bio.2421. Epub 2012 Sep 3.
CdTe nanocrystals (NCs) were fabricated through an organic synthesis. The growth and properties of CdTe NCs depended strongly on the preparation conditions. In a reaction system of octadecene and tetradecylphosphonic acid (TDPA), the growth was slow. CdTe NCs with cubic-like morphology were created in trioctylamine (TOA) using octadecylphosphonic acid (ODPA)-CdO or TDPA-CdO as precursors. The TOA and ODPA system gives rise to NCs with high photoluminescence (PL) efficiencies (12%). A Cdx Zn1-x S shell coating on the CdTe core, gave rise to tunable dark red PL (630-670 nm). The morphology and PL properties of the CdTe cores were drastically affected by shell coating and this determined the properties of CdTe/Cdx Zn1-x S NCs. Small CdTe NCs were easily coated with Cdx Zn1-x S shells. The resulting core/shell NCs revealed a spherical morphology. However, shell growth became slow when large CdTe cores were used. This is ascribed to the cores with a cubic-like morphology. CdS interlayer plays an important role for the formation of the CdTe/Cdx Zn1-x S NCs because the experimental result indicated it is difficult to coat CdTe NCs with a ZnS shell. The core/shell NCs benefited from a Cdx Zn1-x S composite shell because CdTe/CdS NCs created via a similar procedure revealed a low PL efficiency.
碲化镉纳米晶体(NCs)通过有机合成制备。CdTe NCs 的生长和性质强烈依赖于制备条件。在十八烯和十四烷基膦酸(TDPA)的反应体系中,生长缓慢。在三辛胺(TOA)中使用十八烷基膦酸(ODPA)-CdO 或 TDPA-CdO 作为前体,形成具有立方形态的 CdTe NCs。TOA 和 ODPA 体系产生具有高光致发光(PL)效率(12%)的 NCs。在 CdTe 核上涂覆 Cdx Zn1-x S 壳,产生可调谐的深红光 PL(630-670nm)。CdTe 核的形态和 PL 性质受到壳层涂层的强烈影响,这决定了 CdTe/Cdx Zn1-x S NCs 的性质。小的 CdTe NCs 很容易被 Cdx Zn1-x S 壳层涂覆。所得的核/壳 NCs 呈现球形形态。然而,当使用大的 CdTe 核时,壳层生长变得缓慢。这归因于具有立方形态的核。CdS 夹层在 CdTe/Cdx Zn1-x S NCs 的形成中起着重要作用,因为实验结果表明很难用 ZnS 壳涂覆 CdTe NCs。核/壳 NCs 受益于 Cdx Zn1-x S 复合壳,因为通过类似程序制备的 CdTe/CdS NCs 显示出低 PL 效率。