Laboratory of Condensed Matter Spectroscopy and Opto-Electronic Physics, Department of Physics, Shanghai Jiao Tong University, 800 Dong Chuan Road, Shanghai, 200240, China.
Nanoscale Res Lett. 2013 Jan 22;8(1):46. doi: 10.1186/1556-276X-8-46.
We report a simple catalyst-free vapor-phase method to fabricate Zn1-xCuxO micro-cross structures. Through a series of controlled experiments by changing the location of the substrate and reaction time, we have realized the continuous evolution of product morphology from nanorods into brush-like structures and micro-cross structures at different positions, together with the epitaxial growth of branched nanorods from the central stem with the time extended. The growth mechanism of the Zn1-xCuxO micro-cross structures has been proposed to involve the synthesis of Cu/Zn square-like core, surface oxidation, and the secondary growth of nanorod arrays. By the detailed structural analysis of the yielded Zn1-xCuxO samples at different locations, we have shown that the CuO phases were gradually formed in Zn1-xCuxO, which is significant to induce the usual ZnO hexagonal structures changing into four-folded symmetrical hierarchical micro-cross structures. Furthermore, the visible luminescence can be greatly enhanced by the introduction of Cu, and the observed inhomogeneous cathode luminescence in an individual micro-cross structure is caused by the different distributions of Cu.
我们报告了一种简单的无催化剂气相法来制备 Zn1-xCuxO 微交叉结构。通过一系列通过改变衬底位置和反应时间的控制实验,我们已经实现了产物形态从纳米棒到刷状结构和不同位置的微交叉结构的连续演变,以及随着时间的延长,从中心茎上分支纳米棒的外延生长。提出了 Zn1-xCuxO 微交叉结构的生长机制,涉及 Cu/Zn 方形核的合成、表面氧化和纳米棒阵列的二次生长。通过对不同位置生成的 Zn1-xCuxO 样品的详细结构分析,我们表明 CuO 相逐渐在 Zn1-xCuxO 中形成,这对于诱导通常的 ZnO 六方结构转变为四对称分层微交叉结构非常重要。此外,通过引入 Cu 可以大大增强可见发光,并且在单个微交叉结构中观察到的非均匀阴极发光是由 Cu 的不同分布引起的。