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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Reactive VLS and the Reversible Switching between VS and VLS Growth Modes for ZnO Nanowire Growth
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Reactive VLS and the Reversible Switching between VS and VLS Growth Modes for ZnO Nanowire Growth

机译:反应性VLS和ZnO纳米线生长的VS和VLS生长模式之间的可逆转换

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摘要

The controlled reversible switching between vapor—solid (VS) and vapor—liquid—solid (VLS) growth of ZnO nanowires (NWs) mediated by organic solvents, namely, ionic liquids (ILs), is demonstrated. Suppression or enhancement of the VLS mechanism is achieved by the control of Zn oxidation and ZnO reduction by the abundant IL pyrolyzates working as an additional carbon source. A new model called reactive VLS mode based on the Zn—Au alloy and the immediate oxidation of the out-sourced Zn is suggested. Cleaning the tube with concentrated HCl completely reverses the growth from the VLS back to the VS mechanism. The VLS NWs show a strong band-gap luminescence, whereas in the case of VS NWs, the defect luminescence is enhanced. Our results clarify, for the first time, the reason for the different roles of Au, that is, acting as surface defects or as a catalyst in VS and VLS growth modes, respectively. In addition, our results demonstrate the possibility of changing not only the growth mode and extending the growth region but also the NWs' crystal quality using ILs as an additional carbon source.
机译:证明了由有机溶剂,即离子液体(ILs)介导的ZnO纳米线(NWs)的汽-固(VS)和汽-液-固(VLS)生长之间的可控可逆转换。 VLS机制的抑制或增强是通过作为额外碳源的丰富IL热解产物控制Zn氧化和ZnO还原而实现的。提出了一种基于Zn-Au合金和外源Zn的立即氧化的反应性VLS模式的新模型。用浓HCl清洗管子完全使VLS的生长反向回到VS机制。 VLS NW显示出很强的带隙发光,而在VS NW的情况下,缺陷发光得到增强。我们的结果首次阐明了金的不同作用的原因,即分别充当表面缺陷或充当VS和VLS生长模式的催化剂。此外,我们的结果表明,使用ILs作为额外的碳源,不仅可以改变生长方式和扩展生长区域,而且可以改变NWs的晶体质量。

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