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作者:

Li, Yuanfeng (Li, Yuanfeng.) | Zhang, Peng (Zhang, Peng.) | Xiong, Jing (Xiong, Jing.) | Wei, Yuechang (Wei, Yuechang.) | Chi, Hongjie (Chi, Hongjie.) | Zhang, Yilin (Zhang, Yilin.) | Lai, Kezhen (Lai, Kezhen.) | Zhao, Zhen (Zhao, Zhen.) | Deng, Jiguang (Deng, Jiguang.)

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EI Scopus SCIE

摘要:

The purification efficiency of auto-exhaust carbon particles in the catalytic aftertreatment system of vehicle exhaust is strongly dependent on the interface nanostructure between the noble metal component and oxide supports. Herein, we have elaborately synthesized the catalysts (Pt/Fe2O3-R) of Pt nanoparticles decorated on the hexagonal bipyramid alpha-Fe2O3 nanocrystals with co-exposed twelve {113} and six {104} facets. The area ratios (R) of co-exposed {113} to {104} facets in alpha-Fe2O3 nanocrystals were adjusted by the fluoride ion concentration in the hydrothermal method. The strong Pt-Fe2O3{113} facet interaction boosts the formation of coordination unsaturated ferric sites for enhancing adsorption/activation of O-2 and NO. Pt/Fe2O3-R catalysts exhibited the Fe2O3{113} facet-dependent performance during catalytic purification of soot particles in the presence of H2O. Among the catalysts, the Pt/Fe2O3-19 catalyst exhibits the highest catalytic activities (T-50 = 365 degrees C, TOF = 0.13 h(-1)), the lowest apparent activation energy (69 kJ mol(-1)), and excellent catalytic stability during soot purification. Combined with the results of characterizations and density functional theory calculations, the catalytic mechanism is proposed: the active sites located at the Pt-Fe2O3{113} interface can boost the key step of NO oxidation to NO2. The crystal facet engineering is an effective strategy to obtain efficient catalysts for soot purification in practical applications.

关键词:

crystal facet-dependent activity soot purification SMSI Pt alpha-Fe2O3

作者机构:

  • [ 1 ] [Li, Yuanfeng]China Univ Petr, Key Lab Opt Detect Technol Oil & Gas, State Key Lab Heavy Oil Proc, Beijing 102249, Peoples R China
  • [ 2 ] [Zhang, Peng]China Univ Petr, Key Lab Opt Detect Technol Oil & Gas, State Key Lab Heavy Oil Proc, Beijing 102249, Peoples R China
  • [ 3 ] [Xiong, Jing]China Univ Petr, Key Lab Opt Detect Technol Oil & Gas, State Key Lab Heavy Oil Proc, Beijing 102249, Peoples R China
  • [ 4 ] [Wei, Yuechang]China Univ Petr, Key Lab Opt Detect Technol Oil & Gas, State Key Lab Heavy Oil Proc, Beijing 102249, Peoples R China
  • [ 5 ] [Chi, Hongjie]China Univ Petr, Key Lab Opt Detect Technol Oil & Gas, State Key Lab Heavy Oil Proc, Beijing 102249, Peoples R China
  • [ 6 ] [Zhang, Yilin]China Univ Petr, Key Lab Opt Detect Technol Oil & Gas, State Key Lab Heavy Oil Proc, Beijing 102249, Peoples R China
  • [ 7 ] [Lai, Kezhen]China Univ Petr, Key Lab Opt Detect Technol Oil & Gas, State Key Lab Heavy Oil Proc, Beijing 102249, Peoples R China
  • [ 8 ] [Zhao, Zhen]China Univ Petr, Key Lab Opt Detect Technol Oil & Gas, State Key Lab Heavy Oil Proc, Beijing 102249, Peoples R China
  • [ 9 ] [Deng, Jiguang]Beijing Univ Technol, Beijing Key Lab Green Catalysis & Separat, Key Lab Beijing Reg Air Pollut Control, Beijing 100124, Peoples R China

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来源 :

ENVIRONMENTAL SCIENCE & TECHNOLOGY

ISSN: 0013-936X

年份: 2021

期: 23

卷: 55

页码: 16153-16162

1 1 . 4 0 0

JCR@2022

ESI学科: ENVIRONMENT/ECOLOGY;

ESI高被引阀值:94

JCR分区:1

被引次数:

WoS核心集被引频次: 23

SCOPUS被引频次: 24

ESI高被引论文在榜: 0 展开所有

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中文被引频次:

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