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通过锌硫属化物纳米片的氧化作用制备独立原子层状的氧化锌

Free-Standing Atomically Thin ZnO Layers via Oxidation of Zinc Chalcogenide Nanosheets.

机构信息

State Key Laboratory of Silicon Materials, School of Materials Science and Engineering, Zhejiang University , Hangzhou 310027, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2017 Apr 19;9(15):13537-13543. doi: 10.1021/acsami.7b02425. Epub 2017 Apr 5.

Abstract

Monolayer ZnO represents a class of new two-dimensional (2D) materials that are expected to exhibit unique optoelectronic properties and applications. Here we report a novel strategy to synthesize free-standing atomically thin ZnO layers via the oxidation of hydrothermally grown ultrathin zinc chalcogenide nanosheets. With micrometer-scaled lateral size, the obtained ultrathin ZnO layer has a thickness of ∼2 nm, and the layered structure still maintained well after high temperature oxidation. The thermal treatment strongly improves the crystal quality as well without inducing cracks or pinholes in the ultrathin layers. The atomically thin ZnO layers are highly luminescent with dominant green emission. High quality white light is obtained from the mixed phosphors containing the ZnO layers, exhibiting their potential as compelling ultraviolet-excited phosphors.

摘要

单层 ZnO 代表了一类新型的二维(2D)材料,预计将表现出独特的光电性能和应用。在这里,我们报告了一种通过水热生长的超薄锌族化合物纳米片氧化来合成独立原子层状超薄 ZnO 层的新策略。所获得的超薄 ZnO 层具有约 2nm 的厚度,并且在高温氧化后仍保持良好的层状结构。热处理强烈改善了晶体质量,而在超薄层中没有诱导裂纹或针孔。原子层状 ZnO 层具有很强的发光性,主要发射绿光。从含有 ZnO 层的混合荧光粉中获得高质量的白光,表明它们作为有吸引力的紫外激发荧光粉的潜力。

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