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首页> 外文期刊>Nanotechnology >Formation of hybrid structures: Copper oxide nanocrystals templated on ultralong copper nanowires for open network sensing at room temperature
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Formation of hybrid structures: Copper oxide nanocrystals templated on ultralong copper nanowires for open network sensing at room temperature

机译:杂化结构的形成:在超长铜纳米线上模板化的氧化铜纳米晶体,用于室温下的开放式网络感测

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摘要

A facile large-scale synthesis approach for producing intrinsically p-type nanowires with uniform coverage of nanocrystals to form a highly interconnected porous nanowire network is of great demand for p-type sensing. Here, we have demonstrated synthesis of a very high aspect ratio (102-10 5) open network of interconnected hybrid nanocrystals-nanowire copper and copper oxide nanomaterials. The copper nanowire scaffold is employed to realize a porous and highly interconnected network of hybrid metal-metal oxide nanocrystal-nanowire structures. The structural and composition tunability of the hybrid nanomaterials is demonstrated. The hybrid copper-copper oxide nanowires exhibit enhanced gas/light sensing properties without any operating temperature. This may be attributed to enhanced medium diffusion due to the porous network of highly interconnected nanocrystal-nanowire structures.
机译:用于生产本质上均匀覆盖纳米晶体以形成高度互连的多孔纳米线网络的本征p型纳米线的简便大规模合成方法对p型感测非常有需求。在这里,我们展示了互连杂化纳米晶体-纳米线铜和氧化铜纳米材料的非常高的纵横比(102-10 5)开放网络的合成。铜纳米线支架用于实现金属-金属氧化物纳米晶体-纳米线混合结构的多孔且高度互连的网络。证明了杂化纳米材料的结构和组成可调性。杂铜铜氧化物纳米线在没有任何工作温度的情况下表现出增强的气体/光敏特性。这可以归因于由于高度互连的纳米晶体-纳米线结构的多孔网络而导致的介质扩散增强。

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