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A manganese Schiff base complex immobilized on copper-ferrite magnetic nanoparticles as an efficient and recyclable nanocatalyst for selective oxidation of alcohols

机译:以铜铁氧体磁性纳米粒子固定的锰席锭底座复合物,作为一种有效且可回收的纳米催化剂,用于选择性氧化醇

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摘要

A magnetically recoverable nanocatalyst was synthesized by covalent binding of a Schiff base ligand, namely N,N'-bis(Salicylidene)-1,3-diaminopropane-2-ol (H(2)salpn), onto the surface of silica-coated magnetic CuFe2O4 nanoparticles, followed by complexation with MnCl2. The resulting core-shell nanoparticles were characterized by spectroscopic and microscopic methods, including FTIR, XRD, VSM, TGA elemental analysis, TEM, and SEM. The Mn content was determined by ICP analysis. The nanoparticles were investigated as a catalyst for the selective oxidation of alcohols to the corresponding carbonyl compounds with tertiary-butyl hydrogen peroxide. The catalyst can be magnetically separated for reuse, with no noticeable loss of activity in subsequent reaction cycles. FTIR, VSM, and leaching experiments after three successive cycles confirmed that the catalyst was strongly anchored to the magnetic nanoparticles. A suitable mechanism for the reaction is proposed.
机译:通过席夫碱配体的共价结合合成磁性可回收的纳米催化剂,即N,N'-BIS(水杨烯)-1,3-二氨基丙烷-2-醇(H(2)SALPN),在二氧化硅涂层表面上 磁性CuFe2O4纳米颗粒,然后用MnCl 2络合。 所得核 - 壳纳米颗粒的特征在于光谱和微观方法,包括FTIR,XRD,VSM,TGA元素分析,TEM和SEM。 通过ICP分析确定Mn含量。 研究纳米颗粒作为用叔丁基氢过氧化氢选择性氧化醇的催化剂。 催化剂可以是磁性分离以重复使用,在随后的反应循环中没有明显的活性损失。 三次连续循环后的FTIR,VSM和浸出实验证实催化剂强烈锚固到磁性纳米颗粒上。 提出了适用的反应机制。

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