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首页> 外文期刊>ACS nano >Lateral etching of core-shell AU@metal nanorods to metal-tipped au nanorods with improved catalytic activity
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Lateral etching of core-shell AU@metal nanorods to metal-tipped au nanorods with improved catalytic activity

机译:将核-壳AU @金属纳米棒横向刻蚀为金属尖端的AU纳米棒,具有改善的催化活性

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摘要

Selective growth/etching of hybrid materials is very important for the rational synthesis of hierarchical structures and precise modulation of their physical properties. Here, the lateral etching of the core-shell Au@Ag nanorods is achieved by FeCl _3 at room temperature, producing a number of dumbbell-like Ag-tipped Au nanorods. This selective etching at the side of the core-shell nanorods is attributed to the increased reactivity of the side facets, due to less surface passivation of cetyltrimethylammonium bromide. The similar synthetic strategy has also been demonstrated to be successful for the Pd-tipped Au nanorods that have not been reported before, indicating the great potential of this selective etching. The Ag-tipped Au nanorods are examined as a catalyst for the reduction of p-nitrophenol at room temperature. The Ag-tipped Au nanorods exhibit a higher catalytic activity than Au nanorods and core-shell Au@Ag nanorods, which could be attributed to the electronic effect and the unique structure in the Ag-tipped Au nanorods.
机译:杂化材料的选择性生长/蚀刻对于合理合成层次结构和精确调制其物理特性非常重要。在此,通过在室温下通过FeCl 3来实现核壳Au @ Ag纳米棒的横向蚀刻,从而生产出许多哑铃状的Ag尖头Au纳米棒。核-壳纳米棒侧面的这种选择性蚀刻归因于侧面的反应性增加,这是由于十六烷基三甲基溴化铵的表面钝化较少。还证明了类似的合成策略对于以前尚未报道的Pd掺杂金纳米棒是成功的,这表明这种选择性蚀刻的巨大潜力。研究了Ag-尖端的Au纳米棒作为在室温下还原对硝基苯酚的催化剂。含Ag的金纳米棒比Au纳米棒和核-壳Au @ Ag纳米棒表现出更高的催化活性,这可以归因于电子效应和含Ag的金纳米棒的独特结构。

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