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In situ assembly of well-dispersed Ni nanoparticles on silica nanotubes and excellent catalytic activity in 4-nitrophenol reduction

机译:原位组装倪的说法纳米颗粒在硅纳米管和优秀的在4-nitrophenol还原催化活性

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摘要

The easy aggregation nature of ferromagnetic nanoparticles (NPs) prepared by conventional routes usually leads to a large particle size and low loading, which greatly limits their applications to the reduction of 4-nitrophenol (4-NP). Herein, we developed a novel in situ thermal decomposition and reduction strategy to prepare Ni nanoparticles/silica nanotubes (Ni/SNTs), which can markedly prevent the aggregation and growth of Ni NPs, resulting in an ultra-small particle size (about 6 nm), good dispersion and especially high loading of Ni NPs. It was found that Ni/SNTs, which have a high specific surface area (416 m~2 g~(-1)), exhibit ultra-high catalytic activity in the 4-NP reduction (complete reduction of 4-NP within only 60 s at room temperature), which is superior to most noble metal (Au, Pt, and Pd) supported catalysts. Ni/SNTs still showed high activity even after re-use for several cycles, suggesting good stability. In particular, the magnetic property of Ni/SNTs makes it easy to recycle for reuse.
机译:简单的聚合铁磁体的性质纳米颗粒(NPs)由传统通常会导致一个大粒度和路线低负荷,这就极大地限制了他们应用程序减少4-nitrophenol(4-NP)。热分解和减排策略准备镍纳米粒子/二氧化硅纳米管(Ni / SNTs),可明显阻止倪NPs的聚合和增长,导致一个超小粒径(约6海里),很好倪NPs的分散,尤其是高加载。发现Ni / SNTs,高比表面积(416米~ 2 g ~(1)),展览超高4-NP催化活性减少(减少4-NP内60年代在室温下),这是优越的大多数贵金属(非盟、Pt和Pd)的支持催化剂。即使重用几个周期,建议稳定性好。财产Ni / SNTs很容易回收重用。

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