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An approach to control the tip shapes and properties of ZnO nanorods

机译:控制ZnO纳米棒尖端形状和性能的方法

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High-density, well aligned, < 0001 >-oriented wurtzite ZnO nanorod arrays with significantly different tip shapes were controllably fabricated by evaporating zinc powders at temperatures varying from 450 to 600 degrees C. It is found that the tip shape depends not only on the substrate but also on the substrate direction relative to the auxiliary gas flow, and the radius of curvature at these tips can be less than 2 nm. These nanorods exhibit good rectification characteristics in conductive atomic force microscopy (CAFM) measurements; the current rectification can be as large as similar to 10(3) at 1 V. The conductance of these 'nanotips' can be tuned readily by simple air-annealing.
机译:通过在450至600摄氏度的温度范围内蒸发锌粉,可控地制造了尖端形状明显不同的高密度,取向良好的<0001>取向纤锌矿ZnO纳米棒阵列。发现尖端形状不仅取决于电极的形状。相对于辅助气流而言,在基板方向上也可以在基板方向上,并且在这些尖端处的曲率半径可以小于2 nm。这些纳米棒在导电原子力显微镜(CAFM)测量中显示出良好的整流特性。在1 V时,电流整流可以大到与10(3)相似。这些“ nanotips”的电导率可以通过简单的空气退火轻松调节。

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