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Surfactant-Mediated One-Pot Method To Prepare Pd–CeO2 Colloidal Assembled Spheres and Their Enhanced CatalyticPerformance for CO Oxidation

机译:表面活性剂介导的一锅法制备Pd-CeO2胶体组装球及其增强催化作用一氧化碳的性能

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摘要

A simple, one-pot method to fabricate ordered, monodispersed Pd–CeO2 colloidal assembled spheres (CASs) was developed using the surfactant-mediated solvothermal approach, which involves a tunable self-assembled process by carefully controlling different chemical reactions. The evolution process and formation mechanism of the CASs were thoroughly investigated by time-controlled and component-controlled experiments. For CO oxidation, this CAS nanocatalyst exhibited much higher catalytic activity and thermal stability than Pd/CeO2 prepared by an impregnation method, and its complete CO conversion temperature is ∼120 °C. The enhanced catalytic performance for CO oxidation could be attributed to the synergistic effect of highly dispersed PdO species and Pd2+ ions incorporated into the CeO2 lattice. For this CAS catalyst, each sphere can be viewed as a single reactor, and its catalytic performance can be further improved after being supported on alumina, which is obviously higher than results previously reported. Furthermore, this method was used to successfully prepare M–CeO2 CASs (M = Pt, Cu, Mn, Co), showing further that this is a new and ideal approachfor fabricating active and stable ceria-based materials.
机译:使用表面活性剂介导的溶剂热法开发了一种简单的一锅法制备有序的单分散Pd-CeO2胶体组装球(CAS),该方法涉及通过仔细控制不同的化学反应进行可调谐的自组装过程。通过时间控制和成分控制实验,彻底研究了CAS的演化过程和形成机理。对于CO氧化,该CAS纳米催化剂比通过浸渍法制备的Pd / CeO2具有更高的催化活性和热稳定性,并且其完全的CO转化温度为〜120°C。 CO氧化催化性能的增强归因于高度分散的PdO物种和掺入CeO2晶格中的Pd 2 + 离子的协同作用。对于这种CAS催化剂,每个球体都可以看作一个反应器,在氧化铝上负载后,其催化性能可以进一步提高,这明显高于以前报道的结果。此外,该方法还用于成功制备M–CeO2 CAS(M = Pt,Cu,Mn,Co),这进一步表明这是一种新的理想方法用于制造活性和稳定的二氧化铈基材料。

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