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首页> 外文期刊>Journal of Materials Science >Photoelectrochemical CO2 reduction by Cu2O/Cu2S hybrid catalyst immobilized in TiO2 nanocavity arrays
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Photoelectrochemical CO2 reduction by Cu2O/Cu2S hybrid catalyst immobilized in TiO2 nanocavity arrays

机译:通过Cu2O / Cu2S杂交催化剂在TiO2纳米盖阵列中固定的光电化学CO2减少

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摘要

Photoelectrocatalytic CO2 reduction to CO was achieved on Cu2O/Cu2S nanoparticles which are immobilized in TiO2 nanocavity array. The Cu2S shell was obtained by ions exchange reaction of O2- and S2- on the surface of Cu2O by a chemical vapor deposition with Na2S precursor. This coating can protect the Cu2O nanoparticle from photocorrosion during photocatalysis. The lower resistance and plasmonic absorbance endow a superior activity of the Cu2O/Cu2S heterostructures toward photoelectrochemical reduction of CO2. It exhibits a current density of 10.7 mA cm(-2) at the overpotential of - 0.26 V with a CO faradaic efficiency (FE) higher than 81%. The excellent photo-assisted catalytic performance (photo-induced current increment is more than 50%) is attributed to the localized surface plasmonic resonance of Cu2S coatings and highly ordered hierarchical structure of the Cu2O/Cu2S nanoparticles, which facilitate charge carrier separation and mass transfer. These hybrid electrodes demonstrate a long-term stability by resisting photocorrosion within 5 h with a higher FE of CO2 to CO conversion.
机译:在Cu 2 / Cu 2 S纳米颗粒上实现光电催化CO2还原对CO的CO纳米颗粒在TiO2纳米菌阵列中固定。通过用Na 2 S前体的化学气相沉积,通过离子和S2-在Cu 2 O的表面的交换反应获得Cu 2 S壳。该涂层可以在光催化期间保护Cu2O纳米颗粒免受光腐蚀。较低的电阻和等离子体吸光度赋予Cu2O / Cu2S异质结构的优异活性朝向光电化学的CO 2。它在超稳态上显示出10.7 mA cm(-2)的电流密度 - 0.26V,具有高于81%的CO Farada效率(Fe)。优异的光辅助催化性能(光诱导的电流增量大于50%)归因于Cu2S涂层的局部表面等离子体共振和Cu2O / Cu 2 S纳米颗粒的高度有序的等级结构,其促进了电荷载流子分离和传质。这些混合电极通过抵抗5小时内的光腐蚀而表现出长期稳定性,具有更高的CO 2至CO转化。

著录项

  • 来源
    《Journal of Materials Science 》 |2019年第14期| 共10页
  • 作者单位

    Beijing Univ Posts &

    Telecommun Sch Sci State Key Lab Informat Photon &

    Opt Commun Beijing 100876 Peoples R China;

    Beijing Univ Posts &

    Telecommun Sch Sci State Key Lab Informat Photon &

    Opt Commun Beijing 100876 Peoples R China;

    Beijing Univ Posts &

    Telecommun Sch Sci State Key Lab Informat Photon &

    Opt Commun Beijing 100876 Peoples R China;

    Beijing Univ Posts &

    Telecommun Sch Sci State Key Lab Informat Photon &

    Opt Commun Beijing 100876 Peoples R China;

    Beijing Univ Posts &

    Telecommun Sch Sci State Key Lab Informat Photon &

    Opt Commun Beijing 100876 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学 ;
  • 关键词

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