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Synthesis, Control, and Characterization of Surface Properties of Cu(2)O Nanostructures

机译:Cu(2)O纳米结构的表面性质的合成,控制和表征

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摘要

The ability to control nanostructure shape can strongly affect the overall properties of that system. Here we report the ability to deterministically control nanostructure shape, surface facet orientation, and surface potentials of the oxide semiconductor Cu(2)O. Epitaxial Cu(2)O nanostructures with different shapes and geometries from boxes to pyramids to huts have been grown via poised laser deposition. By varying the adatom energy and flux per laser pulse we can tune the nature of the nanostructure geometry, the total density of features, the relative surface area to volume ratio, and can create polar, nonequilibrium surfaces. In addition to detailed structural analysis of the nanostructures, high-resolution Kelvin probe force microscopy has been used to systematically analyze the surface potential and electronic structure of the (100), (110), and (111) surfaces of Cu(2)O. These studies suggest that each surface, possessing a unique atomic structure, gives rise to different surface energy levels of conduction and valence bands and the formation of electronic surface junctions. The implication of these findings in terms of a range of applications is discussed.
机译:控制纳米结构形状的能力会严重影响该系统的整体性能。在这里,我们报告确定性地控制氧化物半导体Cu(2)O的纳米结构形状,表面刻面取向和表面电势的能力。外延Cu(2)O纳米结构具有不同的形状和几何形状,从盒子到金字塔再到小屋,都是通过平衡激光沉积法生长的。通过改变每个激光脉冲的吸附原子能量和通量,我们可以调节纳米结构的几何形状,特征的总密度,相对表面积与体积之比,并可以产生极性非平衡表面。除了对纳米结构进行详细的结构分析外,高分辨率开尔文探针力显微镜还用于系统分析Cu(2)O(100),(110)和(111)表面的表面电势和电子结构。 。这些研究表明,具有独特原子结构的每个表面都会引起不同的能级和价带表面能级以及电子表面结的形成。讨论了这些发现对于一系列应用的意义。

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