Ding Yong, Gao Pu Xian, Wang Zhong Lin
School of Materials Science and Engineering, Georgia Institute of Technology, Atlanta, Georgia 30332-0245, USA.
J Am Chem Soc. 2004 Feb 25;126(7):2066-72. doi: 10.1021/ja039354r.
Vapor-liquid-solid (VLS) is a well-established process in catalyst-guided growth of nanowires. The catalyst particle is generally believed to be in liquid state during growth, and it is the site for adsorbing incoming molecules; the crystalline structure of the catalyst may not have any influence on the structure of the grown one-dimensional nanostructures. In this paper, using tin particle guided growth of ZnO nanostructures as a model system, we show that the interfacial region of the tin particle with the ZnO nanowire/nanobelt could be ordered (or partially crystalline) during the VLS growth, although the local growth temperature is much higher than the melting point of tin, and the crystallographic lattice structure at the interface is important in defining the structural characteristics of the grown nanowires and nanobelts. The interface prefers to take the least lattice mismatch; thus, the crystalline orientation of the tin particle may determine the growth direction and the side surfaces of the nanowires and nanobelts. This result may have important impact on the understanding of the physical chemical process in the VLS growth.
气-液-固(VLS)法是一种成熟的用于在催化剂引导下生长纳米线的工艺。一般认为,在生长过程中催化剂颗粒处于液态,它是吸附进入分子的位点;催化剂的晶体结构可能对生长出的一维纳米结构的结构没有任何影响。在本文中,我们以锡颗粒引导生长ZnO纳米结构作为模型体系,表明尽管局部生长温度远高于锡的熔点,但在VLS生长过程中,锡颗粒与ZnO纳米线/纳米带的界面区域可能是有序的(或部分结晶的),并且界面处的晶体晶格结构对于确定生长出的纳米线和纳米带的结构特征很重要。界面倾向于具有最小的晶格失配;因此,锡颗粒的晶体取向可能决定纳米线和纳米带的生长方向及侧面。这一结果可能对理解VLS生长中的物理化学过程具有重要影响。