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选择性沉积在 Fe3O4/石墨烯复合材料上的贵金属纳米粒子:稳定、可回收、可磁分离的催化剂。

Selectively deposited noble metal nanoparticles on Fe3O4/graphene composites: stable, recyclable, and magnetically separable catalysts.

机构信息

Department State Key Laboratory of Rare Earth Resource Utilization, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, 130022, Jilin, PR China.

出版信息

Chemistry. 2012 Jun 11;18(24):7601-7. doi: 10.1002/chem.201103726. Epub 2012 Apr 16.

Abstract

A simple, efficient, and general approach was developed to selectively deposit noble metal (Pt, Pd, or PtPd) nanoparticles 3-5 nm in size on magnetite/graphene composites. The biomolecule L-lysine with two kinds of functional groups (NH(2) and COOH) played the key role of connecter between noble metals and Fe(3)O(4)/graphene composites. These composites were characterized by TEM, XRD, energy-dispersive X-ray spectroscopy, and X-ray photoelectron spectroscopy. The results indicated that the noble metals are mostly dispersed on the magnetite surfaces of the composites. The as-obtained composites are ideal recyclable catalysts for liquid-phase reactions owing to their stability and efficient magnetic separation. Among these catalysts, the PtPd-based composites exhibited the highest activity and resistance to poisoning during the catalytic reduction of 4-nitrophenol to 4-aminophenol by NaBH(4). Such hybrid catalysts obtained by this simple, efficient method are expected to find use in industrial applications, where separation and recycling are critically required to reduce cost and waste production.

摘要

发展了一种简单、高效、通用的方法,可将尺寸为 3-5nm 的贵金属(Pt、Pd 或 PtPd)纳米颗粒选择性沉积在磁铁矿/石墨烯复合材料上。具有两种官能团(NH2 和 COOH)的生物分子 L-赖氨酸在贵金属和 Fe3O4/石墨烯复合材料之间起到连接剂的关键作用。这些复合材料通过 TEM、XRD、能谱和 X 射线光电子能谱进行了表征。结果表明,贵金属主要分散在复合材料的磁铁矿表面上。由于其稳定性和高效的磁性分离,所获得的复合材料是用于液相反应的理想可回收催化剂。在这些催化剂中,PtPd 基复合材料在 NaBH4 催化还原 4-硝基苯酚为 4-氨基酚的反应中表现出最高的活性和抗中毒能力。通过这种简单、高效的方法获得的这种混合催化剂有望在工业应用中得到应用,在工业应用中,需要分离和回收以降低成本和减少废物产生。

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