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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Synthesis of Highly Crystalline CdSe@ZnO Nanocrystals via Monolayer-hy-Monolayer Epitaxial Shell Deposition
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Synthesis of Highly Crystalline CdSe@ZnO Nanocrystals via Monolayer-hy-Monolayer Epitaxial Shell Deposition

机译:单层-hy-单层外延壳沉积法合成高结晶CdSe @ ZnO纳米晶

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摘要

In principle, nanometer thick, metal oxide shells provide a robust passivation layer that can minimize chemical and photochemical corrosion of semiconductor nanocrystals. Here, formation of single crystal, wurtzite ZnO shells by thermal decomposition of zinc acetylacetonoate is demonstrated. As an example, a simple, one-pot protocol for the preparation of CdSe@ZnO core-shell nanocrystals is presented. The CdSe photoluminescence quantum yield increases 6-fold from 1.4% to 8.6%, while the lifetime increases from 8.7 to 60 ns upon deposition of the ZnO shell and peaks for 5 monolayers of ZnO. High-resolution transmission electron microscopy reveals the core-shell particles to be single crystals with the wurtzite structure. The polydipsersity is maintained at less than σ < 5% for deposition of up to four monolayers of ZnO.
机译:原则上,纳米厚的金属氧化物壳提供了坚固的钝化层,可以使半导体纳米晶体的化学腐蚀和光化学腐蚀最小化。在此,说明了通过乙酰丙酮锌的热分解形成纤锌矿型ZnO单晶壳的情况。例如,介绍了一种简单的一锅法制备CdSe @ ZnO核壳纳米晶体的方法。 CdSe光致发光量子产率从1.4%增长到8.6%,提高了6倍,而在ZnO壳沉积时,寿命从8.7 ns增加到了60 ns,并出现了5个单层ZnO的峰。高分辨率透射电子显微镜显示核壳颗粒为具有纤锌矿结构的单晶。对于最多沉积四个单层ZnO,多分散性保持在σ<5%以下。

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