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碳微球负载金属镍纳米颗粒作为新型多相催化剂及其在硝基苯酚还原中的应用

Carbon Microsphere-Supported Metallic Nickel Nanoparticles as Novel Heterogeneous Catalysts and Their Application for the Reduction of Nitrophenol.

作者信息

Krebsz Melinda, Kótai László, Sajó István E, Váczi Tamás, Pasinszki Tibor

机构信息

School of Chemistry, Monash University, Clayton, VIC 3800, Australia.

Institute of Materials and Environmental Chemistry, Research Centre of Natural Sciences, Hungarian Academy of Sciences, P.O. Box 286, 1519 Budapest, Hungary.

出版信息

Molecules. 2021 Sep 18;26(18):5680. doi: 10.3390/molecules26185680.

Abstract

Nickel nanoparticles are gaining increasing attention in catalysis due to their versatile catalytic action. A novel, low-cost and facile method was developed in this work to synthesize carbon microsphere-supported metallic nickel nanoparticles (Ni-NP/C) for heterogeneous catalysis. The synthesis was based on carbonizing a polystyrene-based cation exchange resin loaded with nickel ions at temperatures between 500 and 1000 °C. The decomposition of the nickel-organic framework resulted in both Ni-NP and carbon microsphere formation. The phase composition, morphology and surface area of these Ni-NP/C microspheres were characterized by powder X-ray diffraction, Raman spectroscopy, scanning electron microscopy and BET analysis. Elemental nickel was found to be the only metal containing phase; fcc-Ni coexisted with hcp-Ni at carbonization temperatures between 500 and 700 °C, and fcc-Ni was the only metallic phase at 800-1000 °C. Graphitization and carbon nanotube formation were observed at high temperatures. The catalytic activity of Ni-NP/C was tested in the reduction of 4-nitrophenol to 4-aminophenol by sodium borohydride, and Ni-NP/C was proved to be an efficient catalyst in this reaction. The relatively easy and scalable synthetic method, as well as the easy separation and catalytic activity of Ni-NP/C, provide a viable alternative to existing nickel nanocatalysts in future applications.

摘要

由于其多功能的催化作用,镍纳米颗粒在催化领域正受到越来越多的关注。本工作开发了一种新颖、低成本且简便的方法来合成用于多相催化的碳微球负载金属镍纳米颗粒(Ni-NP/C)。该合成方法基于在500至1000°C的温度下碳化负载镍离子的聚苯乙烯基阳离子交换树脂。镍有机骨架的分解导致了Ni-NP和碳微球的形成。通过粉末X射线衍射、拉曼光谱、扫描电子显微镜和BET分析对这些Ni-NP/C微球的相组成、形态和表面积进行了表征。发现元素镍是唯一含金属的相;在500至700°C的碳化温度下,面心立方结构的镍(fcc-Ni)与六方密堆积结构的镍(hcp-Ni)共存,而在800 - 1000°C时,fcc-Ni是唯一的金属相。在高温下观察到了石墨化和碳纳米管的形成。通过硼氢化钠将4-硝基苯酚还原为4-氨基苯酚的反应测试了Ni-NP/C的催化活性,结果证明Ni-NP/C在该反应中是一种高效催化剂。相对简便且可扩展的合成方法,以及Ni-NP/C易于分离和催化活性,为未来应用中现有的镍纳米催化剂提供了一种可行的替代方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b59d/8468432/f3d4e3f2dac3/molecules-26-05680-g001.jpg

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