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Ce-Mn coordination polymer derived hierarchical/porous structured CeO2-MnO(x)for enhanced catalytic properties

机译:Ce-Mn配位聚合物中分层/多孔结构CeO2-MnO (x)增强的催化性能

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摘要

Catalytic performance is largely dependent on how the structures/compositions of materials are designed. Herein, CeO2-MnO(x)binary oxide catalysts with a hierarchical/porous structure are prepared by a facile and efficient method, which involves the preparation of the hierarchical Ce-Mn coordination polymer (CPs) precursor, followed by a thermal treatment step. The obtained CeO2-MnO(x)catalysts not only well inherit the hierarchical structure of Ce-Mn CPs, but also possess porous and hollow features due to the removal of organic ligands and heterogeneous contraction during the calcination process. In addition, the effect of the Mn/Ce ratio is also studied to optimize catalytic performance. Specifically, the as-prepared CeO2-MnOx(5 : 5) catalyst exhibits excellent catalytic performance toward CO oxidation and selective catalytic reduction (SCR) of NO with NH(3)at low temperatures. Based on the characterization results, we propose that the special hierarchical structure, high surface area, strong synergistic interaction between CeO(2)and MnOx, and high content of active Ce3+, Mn(4+)and O(surf)are collectively responsible for its remarkable catalytic performance.
机译:催化性能在很大程度上是依赖于如何材料的结构/组成设计。催化剂分层/多孔结构是由一个简单和有效的方法,涉及的准备吗分层Ce-Mn配位聚合物(CPs)前体,紧随其后的是一个热处理步骤。获得的CeO2-MnO (x)催化剂不仅继承Ce-Mn CPs的层次结构,但也由于具有多孔和空洞的特性的有机配体在煅烧异构收缩的过程。比率也优化催化研究的性能。CeO2-MnOx(5: 5)展览优秀的催化剂对CO氧化和催化性能选择性催化还原(SCR)的NH(3)在低温下。表征的结果,我们建议特殊的层次结构,高的表面区域,强大的协同互动(2)首席执行官和MnOx,高含量的活跃Ce3 +,Mn(4 +)和O(冲浪)共同负责其显著的催化性能。

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