磁性尖晶石铁氧体:一种高效、可重复使用的合成hmf纳米催化剂

Jyoti Dhariwal, Ravina Yadav, Sheetal Yadav, A. Sinha, C. Srivastava, G. K. Rao, M. Srivastava, V. Sharma, Monu Verma, P. Rawat, Kiran Banwar, Varun Rawat
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摘要

本文研究了尖晶石铁氧体[MFe2O4]的制备及其催化活性;讨论了M = Fe, Mn, Co, Cu, Ni]纳米颗粒合成5-羟甲基糠醛(HMF)的方法。铁氧体具有独特的物理化学性质,包括优异的磁性、高比表面积、活性表面位点、高化学稳定性、可调节的形状和尺寸以及易于功能化。这些性质使它们成为许多有机反应中必不可少的多相催化剂。本研究旨在合成一系列过渡金属铁氧体纳米颗粒,并将其用于碳水化合物脱水合成5-羟甲基糠醛(HMF)。采用共沉淀法制备了纳米铁氧体,并通过PXRD验证了其相稳定性。利用BET和PXRD分别计算了纳米颗粒的比表面积和晶粒尺寸。制备简便的非均相纳米催化剂表现出显著的催化性能,其中CuFe2O4在尖晶石铁氧体中催化能力最强。铁氧体纳米颗粒是一种多相催化剂,具有磁性,可以很容易地通过外部磁铁回收,并且可以重复使用几次,而不会大大降低催化活性。以果糖为原料合成HMF,产率达71%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Magnetic Spinel Ferrite: An Efficient, Reusable Nano Catalyst for HMFSynthesis
In the present work, the preparation and catalytic activity of spinel ferrite [MFe2O4; M = Fe, Mn, Co, Cu, Ni] nanoparticles to synthesize 5-hydroxymethylfurfural (HMF) have been discussed. Ferrites possess unique physicochemical properties, including excellent magnetic characteristics, high specific surface area, active surface sites, high chemical stability, tunable shape and size, and easy functionalization. These properties make them essential heterogeneous catalysts in many organic reactions. This study aims to synthesize a series of transition metal ferrite nanoparticles and use them in the dehydration of carbohydrates for 5-hydroxymethylfurfural (HMF) synthesis. The ferrite nanoparticles were prepared via the co-precipitation method, and PXRD confirmed their phase stability. The surface area and the crystallite size of the nanoparticles were calculated using BET and PXRD, respectively. The easily prepared heterogeneous nanocatalyst showed a significant catalytic performance, and among all spinel ferrites, CuFe2O4 revealed maximum catalytic ability. Being a heterogeneous catalyst and magnetic in nature, ferrite nanoparticles were easily recovered by using an external magnet and reused up to several runs without substantial loss in catalytic activity. HMF was synthesized from fructose in a good yield of 71%.
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