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独立式 ZnO 纳米及微结构薄片的纳观机电与电子性质

Nanoscale electromechanical and electronic properties of free-standing ZnO nano- and microstructured platelets.

机构信息

School of Materials Science and Engineering, UNSW Sydney, Sydney, NSW 2052, Australia.

出版信息

Nanotechnology. 2017 Oct 6;28(40):405701. doi: 10.1088/1361-6528/aa87f8. Epub 2017 Aug 23.

Abstract

The piezoelectric response, conductivity and surface potential of individual grains and grain boundaries in free-standing polycrystalline ZnO nano- and microstructured platelets is studied using scanning probe based techniques on the nanoscale. We find that applied dc electric fields can alter the piezoresponse in individual grains, as well as the local nanoscale conductivity, and invert the relative surface potential at grain boundaries. This can be attributed to defect accumulation at the grain surfaces and at grain boundaries and the associated density of carriers. Together with recently observed below-bandgap photoconductivity at grain boundaries, the presented observation opens new venues for potential nanoelectronic applications that rely on grain and grain boundary engineering and functionality in a wide-bandgap transparent material.

摘要

使用基于扫描探针的纳米尺度技术研究了自由站立多晶 ZnO 纳米和微结构薄片中单个晶粒和晶界的压电响应、电导率和表面电势。我们发现,外加直流电场可以改变单个晶粒的压电阻抗,以及局部纳米尺度电导率,并反转晶界处的相对表面电势。这可以归因于晶粒表面和晶界处的缺陷积累以及相关载流子密度。结合最近在晶界处观察到的带隙下光电导率,所呈现的观察结果为潜在的纳米电子应用开辟了新途径,这些应用依赖于宽带隙透明材料中的晶粒和晶界工程和功能。

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