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Cu(ll) Complex onto a Pyridine-Based Porous Organic Polymer as a Heterogeneous Catalyst for Nitroarene Reduction

机译:Cu(LL)复合物上基于吡啶的多孔有机聚合物,作为硝化还原的异质催化剂

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摘要

Unlike traditional catalysts, a Cu(ll) catalyst incorporated onto a new pyridine based porous organic polymer linked by carbox-amide functionality has been developed by impregnation method. Materials are characterized using FT-IR, solid-state NMR, PXRD, SEM, TEM techniques. The uniform confinement effect of the Cu(ll) loaded polymer is assured by energy-dispersive X-ray (EDX) elemental mapping, ICP and AAS spectroscopic analysis. The Cu(ll) loaded material further employed as a heterogeneous catalyst for nitroarene reduction and reported as an excellent catalyst with improved performances over those reported using expensive and precious metals (like Au and Pd) on immobilized organic porous materials. The oxidation state of Cu in the catalytic cycle is corroborated with XPS analysis. The present study also emphasizes the role of π-electron rich organic porous polymer as promoter of electronic stature of finely dispersed Cu sites accountable for the excellent catalytic activity towards nitroarene reduction.
机译:与传统的催化剂不同,通过浸渍方法开发了由箱子 - 酰胺功能链接的新的基于吡啶的多孔有机聚合物的Cu(LL)催化剂。使用FT-IR,固态NMR,PXRD,SEM,TEM技术表征材料。 CU(LL)负载聚合物的均匀限制效应通过能量分散性X射线(EDX)元素映射,ICP和AAS光谱分析来确保。 Cu(LL)装载的材料进一步用作硝酸降低的异质催化剂,并据报道是一种出色的催化剂,其性能改善了使用固定的有机多孔材料的使用昂贵和贵金属(例如AU和PD)的报道的催化剂。通过XPS分析,催化循环中Cu的氧化态得到了证实。本研究还强调了π-电子富有机多孔聚合物作为精细分散的Cu位点的电子地位的启动子的作用,这对硝基苯乙烯还原的出色催化活性负责。

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