Growth of Au-catalyzed and self-catalyzed ZnO nanowires using chemical vapor deposition technique

Pu Yong, Choy Kwang Leong, Hou Xianghui
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引用次数: 1

Abstract

With the ongoing miniaturization of devices such as FETs [1], the synthesis of ZnO NWs (building blocks) has attracted extensive research interest. ZnO NWs have been synthesized via different routes by many research groups [2–4]. In order for these building blocks to be incorporated into functional nano-devices, controlled synthesis of the ZnO NWs to obtain features such as the desired size, shape and alignment should be fulfilled. This is a rather challenging task. A better understanding of the growth mechanism of ZnO NWs may be helpful to resolve these uncertainties. However, the underlying mechanism for the growth of the ZnO NWs for both self-catalyzed and Au-catalyzed ZnO NWs, have not been well elucidated. In addition, there is no fully developed cohesive model that explains the growth mechanism of both self-catalyzed and Au-catalyzed ZnO NWs.
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化学气相沉积法生长au催化和自催化氧化锌纳米线
随着fet[1]等器件的不断小型化,ZnO NWs(构建块)的合成引起了广泛的研究兴趣。许多研究小组已经通过不同的途径合成了ZnO纳米波[2-4]。为了将这些构建块整合到功能纳米器件中,必须控制ZnO NWs的合成以获得所需的尺寸,形状和排列等特征。这是一项颇具挑战性的任务。更好地了解ZnO NWs的生长机制可能有助于解决这些不确定性。然而,自催化和au催化ZnO NWs生长的潜在机制尚未得到很好的阐明。此外,目前还没有完整的内聚模型来解释自催化和au催化的ZnO NWs的生长机制。
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