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Highly UV luminescent ZnO microtetrapod-on-nanowire hybrids

机译:高度紫外线发光的ZnO纳米线上的四脚微杂化物

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The author reports the first all-ZnO microtetrapod-on-nanowire hybrids using the cost-effective Au nanoseed assisted open static atmospheric pressure vapor transport method. The unconventional ZnO flower analogue hybrid structure consists of center-tapered ZnO microtetrapods (typically 1-2 mu m in dimension) on ZnO 'backbone' nanowires (typically 20 nm in diameter). Three new Raman peaks, centered at 225, 275, 561 cm(-1), never seen before in ZnO nanocrystals, were first observed in the ZnO hybrids. The hybrids exhibit excellent luminescent properties with a single ultraviolet emission band centered at about 377 nm with an ultra-narrow full width at half maximum of similar to 4 nm, which makes it a promising candidate for optoelectronic applications. A preliminary self-assembled synergic growth mechanism is proposed to understand the formation of the structurally stable morphology where the vapor-liquid-solid and vapor-solid mode work together. Our results could open up possibilities for making ZnO nanocrystals to a new level of more complex nanoarchitectures.
机译:作者报告了首个使用成本效益高的金纳米种子辅助开放式静态大气压蒸气传输方法的全ZnO微四足动物纳米线杂种。非常规的ZnO花类似物杂化结构由在ZnO“主干”纳米线上(直径通常为20 nm)上的中心锥形ZnO微型四足动物(尺寸通常为1-2μm)组成。首先在ZnO杂化物中观察到三个新的拉曼峰,中心位于225、275、561 cm(-1),这在ZnO纳米晶体中从未见过。杂种显示出优异的发光性能,其中一个紫外线发射带的中心波长约为377 nm,半宽度的超窄全宽类似于4 nm,这使其成为光电应用的有希望的候选者。提出了初步的自组装协同生长机制,以了解汽-液-固和汽-固模式共同作用的结构稳定形态的形成。我们的结果可能为将ZnO纳米晶体制造到更复杂的纳米结构的新水平开辟可能性。

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