首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Self-assembly epitaxial growth of nanorods on nanowalls in hierarchical ZnO hexagonal nanocastle
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Self-assembly epitaxial growth of nanorods on nanowalls in hierarchical ZnO hexagonal nanocastle

机译:纳米ZnO六角形纳米城堡中纳米壁上纳米棒的自组装外延生长

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摘要

Three-dimensional (3D) hierarchical porous nanostructure materials with controlled morphology have attracted much attention for their unique properties and wide applications. In the present work, a novel 3D hierarchical ZnO nanostructure was prepared through chemical vapor deposition, which is self-assembled by an array of vertical 1D nanorods on top of 2D nanowalls network in 3D hexagonal nanocastle. As revealed by transmission electron microscopy, the hierarchical nanostructures are composed of single crystal ZnO along the [0001] direction, and the preferred surfaces of nanowalls are {1010}. Based on those experimental results, a growth mechanism which involves a Zn-self-catalytic vapor– liquid–solid and vapor–solid mode is proposed to explain the formation of nanorods on nanowalls in 3D nanocastle. Raman and photoluminescence spectrum demonstrated that these 3D hierarchical ZnO nanostructures are nearly free of strain and exhibit an intense ultraviolet emission at 377.6 nm with negligible defect-related green bands.
机译:具有受控形态的三维(3D)分层多孔纳米结构材料因其独特的性能和广泛的应用而备受关注。在本工作中,通过化学气相沉积制备了新颖的3D分层ZnO纳米结构,该结构通过在3D六角形纳米城堡中2D纳米壁网络顶部的垂直1D纳米棒阵列进行自组装。如通过透射电子显微镜揭示的,分层的纳米结构由沿[0001]方向的单晶ZnO组成,并且纳米壁的优选表面为{1010}。根据这些实验结果,提出了一种涉及锌自催化气-液-固和气-固模式的生长机理,以解释3D纳米城堡中纳米壁上纳米棒的形成。拉曼光谱和光致发光光谱表明,这些3D分层ZnO纳米结构几乎没有应变,并且在377.6 nm处显示出强烈的紫外线发射,而与缺陷相关的绿色谱带可忽略不计。

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