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Pr掺杂CeO纳米棒上原子分散的Pd在CO氧化中增强的催化性能。

Enhanced catalytic performance of atomically dispersed Pd on Pr-doped CeO nanorod in CO oxidation.

作者信息

Deng Yanbo, Tian Pengfei, Liu Shijie, He Huaqiang, Wang Yuan, Ouyang Like, Yuan Shaojun

机构信息

Low-carbon Technology & Chemical Reaction Engineering Lab, College of Chemical Engineering, Sichuan University, Chengdu 610065, China.

Key Laboratory of Pressure Systems and Safety (Ministry of Education), School of Mechanical and Power Engineering, East China University of Science and Technology, Shanghai, China Key Laboratory of Pressure Systems and Safety (Ministry of Education), School of Mechanical and Power Engineering, East China University of Science and Technology, Shanghai 200237, China.

出版信息

J Hazard Mater. 2022 Mar 15;426:127793. doi: 10.1016/j.jhazmat.2021.127793. Epub 2021 Nov 15.

Abstract

Single-atom noble metal catalysts have been widely studied for catalytic oxidation of CO. Regulating the coordination environment of single metal atom site is an effective strategy to improve the intrinsic catalytic activity of single atom catalyst. In this work, single atom Pd catalyst supported on Pr-doped CeO nanorods was prepared, and the performance and nature of Pr-coordinated atomic Pd site in CO catalytic oxidation are systematically investigated. The structure characterization using AC-HAADF-STEM, EXAFS, XRD and Raman spectroscopy demonstrate the formation of single atom Pd site and abundant surface oxygen vacancies on the surface of Pr-doped CeO nanorod. With the combination of the XPS characterization and DFT calculations, the oxidation state of Pd on Pr-doped CeO nanorod is determined lower than that on CeO nanorod. The turnover frequency of CO oxidation is markedly increased from 8.4 × 10 to 31.9 × 10 s with Pr-doping at 130 ºC and GHSV of 70,000 h. Combined with kinetic studies, DRIFT and DFT calculations, the doped-Pr atoms reduced the formation energy of oxygen vacancies and generate more oxygen vacancies around the atomically dispersed Pd sites on the surface of cerium oxide, which reduces the dissociation energy of oxygen, thereby accelerating the reaction rate of CO oxidation.

摘要

单原子贵金属催化剂已被广泛研究用于CO的催化氧化。调节单金属原子位点的配位环境是提高单原子催化剂本征催化活性的有效策略。在这项工作中,制备了负载在Pr掺杂CeO纳米棒上的单原子Pd催化剂,并系统研究了Pr配位的原子Pd位点在CO催化氧化中的性能和性质。使用AC-HAADF-STEM、EXAFS、XRD和拉曼光谱进行的结构表征证明了在Pr掺杂CeO纳米棒表面形成了单原子Pd位点和丰富的表面氧空位。结合XPS表征和DFT计算,确定Pr掺杂CeO纳米棒上Pd的氧化态低于CeO纳米棒上的氧化态。在130℃和70,000 h的GHSV条件下,Pr掺杂使CO氧化的周转频率从8.4×10显著提高到31.9×10 s。结合动力学研究、DRIFT和DFT计算,掺杂的Pr原子降低了氧空位的形成能,并在氧化铈表面原子分散的Pd位点周围产生更多的氧空位,这降低了氧的解离能,从而加速了CO氧化的反应速率。

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