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Seed/catalyst-free vertical growth of high-density electrodeposited zinc oxide nanostructures on a single-layer graphene

机译:单层石墨烯上高密度电沉积氧化锌纳米结构的无种子/无催化剂垂直生长

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摘要

We report the seed/catalyst-free vertical growth of high-density electrodeposited ZnO nanostructures on a single-layer graphene. The absence of hexamethylenetetramine (HMTA) and heat has resulted in the formation of nanoflake-like ZnO structure. The results show that HMTA and heat are needed to promote the formation of hexagonal ZnO nanostructures. The applied current density plays important role in inducing the growth of ZnO on graphene as well as in controlling the shape, size, and density of ZnO nanostructures. High density of vertically aligned ZnO nanorods comparable to other methods was obtained. The quality of the ZnO nanostructures also depended strongly on the applied current density. The growth mechanism was proposed. According to the growth timing chart, the growth seems to involve two stages which are the formation of ZnO nucleation and the enhancement of the vertical growth of nanorods. ZnO/graphene hybrid structure provides several potential applications in electronics and optoelectronics such as photovoltaic devices, sensing devices, optical devices, and photodetectors.
机译:我们报告了单层石墨烯上高密度电沉积ZnO纳米结构的无种子/无催化剂的垂直生长。六亚甲基四胺(HMTA)和热的缺乏导致形成了纳米片状ZnO结构。结果表明,需要HMTA和热量来促进六角形ZnO纳米结构的形成。施加的电流密度在诱导ZnO在石墨烯上的生长以及控制ZnO纳米结构的形状,大小和密度方面起着重要作用。获得了可与其他方法相比的高密度垂直排列的ZnO纳米棒。 ZnO纳米结构的质量也强烈取决于所施加的电流密度。提出了生长机理。根据生长时序图,生长似乎涉及两个阶段,即ZnO成核的形成和纳米棒垂直生长的增强。 ZnO /石墨烯混合结构在电子器件和光电器件中提供了多种潜在应用,例如光伏器件,传感器件,光学器件和光电探测器。

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