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Self-assembled ultrafine hierarchical ZnS treelike nanoarchitectures

机译:自组装超细分层ZnS树状纳米结构

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Ultrafine hierarchical tree-shaped nanoarchitectures of ZnS were synthesized by a H_2-assisted thermal evaporation and condensation technique. Morphology and composition of the ZnS deposit were studied by means of field emission scanning electron microscopy, high-resolution transmission electron microscopy and energy dispersive X-ray spectroscopy. The deposit was found to consist of a layer of oriented submicrorods partly covered by microsheets and randomly oriented submicrowires, and three-dimensional treelike nanoarchitectures grew epitaxially on various submicrorods, microsheets, and submicrowires. The growth of the nanostructures is a spontaneous and self-assembled process. Vapor-solid (VS) growth mechanism is proposed for the formation of the treelike nanostructures because catalyst was not introduced during the synthesis process. This novel hierarchical ZnS nanoarchitecture may offer great potential for applications, including three-dimensional nanoelectronics and high efficient spatial resolved photon detector.
机译:通过H_2辅助的热蒸发和冷凝技术合成了ZnS的超细树状纳米结构。通过场发射扫描电子显微镜,高分辨率透射电子显微镜和能量色散X射线光谱研究了ZnS沉积物的形貌和组成。发现该沉积物由部分由微片和随机定向的亚微丝覆盖的定向亚微棒层组成,三维树状纳米结构在各种亚微棒,微片和亚微丝上外延生长。纳米结构的生长是自发和自组装的过程。由于在合成过程中未引入催化剂,因此提出了汽固(VS)生长机理用于树状纳米结构的形成。这种新颖的分层ZnS纳米结构可能为包括三维纳米电子学和高效空间分辨光子探测器在内的应用提供巨大潜力。

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