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胺功能化导致负载在镍铁氧体和钴铁氧体上的钯催化剂在硝基苯加氢反应中的性能得到增强。

Amine Functionalization Leads to Enhanced Performance for Nickel- and Cobalt-Ferrite-Supported Palladium Catalysts in Nitrobenzene Hydrogenation.

机构信息

Institute of Chemistry, University of Miskolc, Miskolc-Egyetemváros, 3515 Miskolc, Hungary.

Institute of Mineralogy and Geology, University of Miskolc, Miskolc-Egyetemváros, 3515 Miskolc, Hungary.

出版信息

Int J Mol Sci. 2023 Aug 28;24(17):13347. doi: 10.3390/ijms241713347.

Abstract

Easy preparation, good yield and easy recovery are the key challenges in the development of industrial catalysts. To meet all these three criteria, we have prepared intelligent, magnetizable NiFeO- and CoFeO-supported palladium catalysts that can be easily and completely recovered from the reaction medium by magnetic separation. The fast and facile preparation was achieved by a solvothermal method followed by sonochemical-assisted decomposition of the palladium nanoparticles onto the surface of the magnetic nanoparticles. The metal-support interaction was enhanced by amine functionalization of the supports using monoethanolamine. The performance and stability of the non-functionalized and amine-functionalized NiFeO- and CoFeO-supported palladium catalysts were compared in the industrially important nitrobenzene hydrogenation reaction. All catalysts showed high catalytic activity during aniline synthesis; complete nitrobenzene conversion and high aniline yield (above 97 n/n%) and selectivity (above 98 n/n%) were achieved. However, during reuse tests, the activity of the non-functionalized catalysts decreased, as the palladium was leached from the surface of the support. On the other hand, in the case of their amine-functionalized counterparts, there was no decrease in activity, and a non-significant decrease in palladium content could be measured. Based on these results, it can be concluded that amine functionalization of transition metal ferrites may result in more effective catalysts due to the enhanced metal-carrier interaction between the support and the precious metal.

摘要

制备简便、产率高、易于回收是工业催化剂开发的关键挑战。为了满足这三个标准,我们制备了智能的、可磁化的 NiFeO 和 CoFeO 负载钯催化剂,它们可以通过磁分离从反应介质中轻松、完全地回收。快速简便的制备方法是通过溶剂热法,然后通过超声化学辅助将钯纳米颗粒分解到磁性纳米颗粒的表面上。通过使用单乙醇胺对载体进行胺功能化,增强了金属-载体相互作用。在工业上重要的硝基苯加氢反应中,比较了非功能化和胺功能化的 NiFeO 和 CoFeO 负载钯催化剂的性能和稳定性。所有催化剂在苯胺合成过程中均表现出高催化活性;完全转化硝基苯,苯胺收率(高于 97 n/n%)和选择性(高于 98 n/n%)高。然而,在重复使用测试中,非功能化催化剂的活性下降,因为钯从载体表面浸出。另一方面,对于其胺功能化的对应物,活性没有下降,并且可以测量到钯含量的非显著下降。基于这些结果,可以得出结论,由于载体和贵金属之间的增强的金属-载体相互作用,过渡金属铁氧体的胺功能化可能导致更有效的催化剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e07/10487572/d2ff3da78381/ijms-24-13347-g001.jpg

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