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首页> 外文期刊>Catalysis Letters >Revealing the Role of Chain Length of Ligands on Gold Nanoparticles Surface in the Process for Catalysis Reduction of 4-Nitrophenol
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Revealing the Role of Chain Length of Ligands on Gold Nanoparticles Surface in the Process for Catalysis Reduction of 4-Nitrophenol

机译:揭示配体链长对金纳米粒子表面的角度的作用,4-硝基苯酚的催化减少

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摘要

The hindrance of ligands chain arising from colloidal nanoparticle (NPs) surface in the process for different kinds of colloidal Au NPs catalyzed reduction of 4-nitrophenol (4-NP) is presented. The hindrance around Au NPs is controlled by varying the length of chain ligands coated on Au NPs. As the length of the ligand chain shortens, the catalytic activity of colloidal Au NPs got significant promotion for the 4-NP reduction reaction. Till inorganic sulfide ion as surface ligand, the catalytic activity of Au@S2- NPs reached the top. Moreover, by grafting different organic chain ligands of quaternary ammonium salts into Au@S2- NPs to vary the length of ligands, we can realize the regulation of catalytic reaction rate during the procedure of the reduction of 4-NP. In particular, Au@S2- NPs also exhibited excellent catalytic cycle stability.
机译:提出了由胶体纳米粒子(NPS)表面引起的配体链的障碍,在不同种类的胶体Au nps催化的4-硝基苯酚(4-NP)的过程中。 通过改变涂覆在Au nps上的链状配体的长度来控制Au NP周围的障碍。 随着配体链的长度缩短,胶体Au nps的催化活性对于4-np还原反应具有显着的促进。 直到无机硫化物离子作为表面配体,Au @ s2-nps的催化活性达到顶部。 此外,通过将季铵盐的不同的有机链配体移植到Au @ S2-NPS中以改变配体的长度,我们可以在减少4-NP的过程中实现催化反应速率的调节。 特别是,Au @ S2-NPS还表现出优异的催化循环稳定性。

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