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首页> 外文期刊>Energy & environmental science >A selectively exposed crystal facet-engineered TiO2 thin film photoanode for the higher performance of the photoelectrochemical water splitting reaction
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A selectively exposed crystal facet-engineered TiO2 thin film photoanode for the higher performance of the photoelectrochemical water splitting reaction

机译:选择性暴露的晶体刻面工程化的TiO2薄膜光电阳极,可实现更高的光电化学水分解反应性能

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摘要

In the present study, a selectively exposed (101)-crystal facet engineered TiO2 photoanode is investigated for the higher efficiency of the hydrogen evolution reaction. To date, even though the photoelectrochemical performance (PEC) dependent on exposed crystal facets has been calculated and demonstrated in semiconducting microcrystals, selectively exposed crystal facets of photocatalyst thin films have not been reported yet. Herein, we demonstrate a TiO2 thin film photoanode with 100%-exclusively exposed crystal facets and suggest a methodology to obtain metal oxide thin film photoanodes with selectively exposed crystal facets. A selectively exposed crystal facet-manipulated metal oxide thin film photoanode is fabricated over pre-synthesized microcrystals through a three-step strategy: (1) hydrothermal synthesis of microcrystals, (2) positioning of microcrystals via polymer-induced manual assembly, and (3) fabrication of selectively exposed crystal facets of a TiO2 thin film through a secondary growth hydrothermal reaction. Based on the synthesis of representative TiO2 microcrystals with dominantly exposed (101), (100) and (001) crystal facets, the selectively exposed crystal faceted TiO2 thin film photoanode is comparatively investigated for practical PEC performance. The photocurrent density of the selectively exposed (101) crystal faceted TiO2 thin film photoanode is determined as 0.13 mA cm(-2) and has an 18% conversion efficiency of incident photon-to-current at a 0.65 V Ag/AgCl potential under AM 1.5G illumination. Its photoelectrochemical hydrogen production reached 0.07 mmol cm(-2) for 12 h, which is higher than those of (100) and (001) faceted photoelectrodes.
机译:在本研究中,研究了选择性暴露的(101)晶面工程TiO2光电阳极,以提高析氢反应的效率。迄今为止,即使已经计算出并在半导体微晶中证明了依赖于暴露的晶面的光电化学性能(PEC),但尚未报道光催化剂薄膜的选择性暴露的晶面。在这里,我们演示了具有100%排他性暴露的晶面的TiO2薄膜光电阳极,并提出了一种获得具有选择性暴露的晶面的金属氧化物薄膜光阳极的方法。通过三步策略在预合成的微晶上制备选择性暴露的晶面操纵的金属氧化物薄膜光电阳极:(1)水热合成微晶;(2)通过聚合物诱导的手动组装定位微晶;和(3 )通过二次生长水热反应制备TiO2薄膜的选择性暴露的晶面。基于具有主要暴露的(101),(100)和(001)晶面的代表性TiO2微晶的合成,针对实用PEC性能,比较研究了选择性暴露的具有晶面的TiO2薄膜光电阳极。选择性暴露的(101)晶面TiO2薄膜光电阳极的光电流密度确定为0.13 mA cm(-2),并且在AM下在0.65 V Ag / AgCl电位下具有18%的入射光子-电流转换效率1.5G照明。其光电化学产氢12小时达到0.07 mmol cm(-2),高于(100)和(001)多面光电极。

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  • 来源
    《Energy & environmental science》 |2015年第12期|3646-3653|共8页
  • 作者单位

    Sogang Univ, Korea Ctr Artificial Photosynth, Seoul 121742, South Korea|Sogang Univ, Dept Chem, Seoul 121742, South Korea;

    Sogang Univ, Korea Ctr Artificial Photosynth, Seoul 121742, South Korea|Sogang Univ, Dept Chem, Seoul 121742, South Korea;

    Chinese Acad Sci, Inst Met Res, Shenyang Natl Lab Mat Sci, Shenyang 110016, Peoples R China;

    Sogang Univ, Korea Ctr Artificial Photosynth, Seoul 121742, South Korea|Sogang Univ, Dept Chem, Seoul 121742, South Korea;

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