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氧化锌的金字塔形纳米结构。

Pyramidal nanostructures of zinc oxide.

作者信息

Angappane S, John Neena Susan, Kulkarni G U

机构信息

Chemistry and Physics of Materials Unit, Jawaharlal Nehru Centre for Advanced Scientific Research, Jakkur P.O., Bangalore-560 064, India.

出版信息

J Nanosci Nanotechnol. 2006 Jan;6(1):101-4.

Abstract

Zinc oxide (ZnO) nanostructures have been prepared by pulsed laser deposition of the oxide onto Si(100) substrate at 600 degrees C. An examination of the morphology using atomic force microscopy and scanning electron microscopy reveals well formed pyramidal structures consistent with the growth habit of ZnO. A domain matched epitaxy across the interface makes the ZnO pyramids orient along the axes of Si(100) surface. The pyramidal nanostructures signify an intermediate state in the growth of hexagonal nanorods of ZnO. The hardness of the nanostructures as well as their response to oxygen gas have been investigated using nanoindentation and conducting probe methods respectively. ZnO nanostructures are much harder than their bulk. The hardness of ZnO pyramids obtained by nanoindentation is 70 +/- 10 GPa which is about one order more that of bulk ZnO. Besides, the nanostructures exhibit high sensitivity towards oxygen. A 70% increase in the resistance of ZnO nanostructures is observed when exposed to oxygen atmosphere.

摘要

通过在600摄氏度下将氧化锌脉冲激光沉积到硅(100)衬底上制备了氧化锌(ZnO)纳米结构。使用原子力显微镜和扫描电子显微镜对其形态进行检查,发现形成了与ZnO生长习性一致的良好金字塔结构。跨界面的畴匹配外延使ZnO金字塔沿硅(100)表面的轴取向。金字塔形纳米结构表示ZnO六方纳米棒生长的中间状态。分别使用纳米压痕和导电探针方法研究了纳米结构的硬度及其对氧气的响应。ZnO纳米结构比其块体硬得多。通过纳米压痕获得的ZnO金字塔的硬度为70±10 GPa,比块体ZnO的硬度大约高一个数量级。此外,纳米结构对氧气表现出高灵敏度。当暴露于氧气气氛中时,观察到ZnO纳米结构的电阻增加了70%。

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