这篇文章在控制生长考察最近的开发 ofone 维(1D ) 氧化物 nanomaterials 包括 ZnO, SnO_2, In_2O_3, Ga_2O_3, SiO_x, MgO, andAl_2O_3。1D 氧化物 nanomaterials 的生长在简单化学蒸汽运输和冷凝作用系统被执行。这篇文章将以许多研究人员完成的纳米技术和 1Dnanomaterials 的调查开始,然后主要与他们改变试验性的参数控制的形态学,尺寸,作文,和微观结构在 1Doxide nanomaterials 的控制生长上讨论,例如在原始资料和底层的温度,在试管炉子,全部的反应时间,炉子的加热的率,煤气的流动率,和开始的材料的温度坡度。他们在各种各样的形态学的形成的角色被分析并且讨论。最后,这评论将在这个区域的未来研究方向上与个人观点被结束。
This article reviews the recent developments in the controlled growth of one-dimensional (1D) oxide nanomaterials, including ZnO, SnO2, In203, Ga203, SiOx, MgO, and Al203. The growth of 2D oxide nanomaterials was carried out in a simple chemical vapor transport and condensation system. This article will begin with a survey of nanotechnology and 1D nanomaterials achieved by many researchers, and then mainly discuss on the controlled growth of ID oxide nanomaterials with their morphologies, sizes, compositions, and microstructures controlled by altering experimental parameters, such as the temperature at the source material and the substrate, temperature gradient in the tube furnace, the total reaction time, the heating rate of the furnace, the gas flow rate, and the starting material. Their roles in the formation of various morphologies are analyzed and discussed. Finally, this review will be concluded with personal perspectives on the future research directions of this area.