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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Visible Light-Driven Electron Transfer from a Dye-Sensitized p-Type NiO Photocathode to a Molecular Catalyst in Solution: Toward NiO-Based Photoelectrochemical Devices for Solar Hydrogen Production
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Visible Light-Driven Electron Transfer from a Dye-Sensitized p-Type NiO Photocathode to a Molecular Catalyst in Solution: Toward NiO-Based Photoelectrochemical Devices for Solar Hydrogen Production

机译:从染料敏化的p型NiO光电阴极到溶液中的分子催化剂的可见光驱动电子转移:转向用于太阳能制氢的基于NiO的光电化学装置

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摘要

The photoelectrochemical activity of a mesoporous NiO electrode sensitized by a ruthenium complex was investigated with several rhodium and cobalt H-2-evolving catalysts. Photocurrent as high as 80 mu A/cm(2) was produced by irradiation of such photocathode in the presence of the Rh(III) polypyridyl complexes, while cobalt complexes gave almost no photocurrent. Photolysis experiments led to the two-electron reduced form of the Rh(III) complexes into Rh(I) complexes and demonstrate the occurrence of an electron transfer chain from NiO to the catalyst. Mott-Schottky experiments evidenced the pH dependence of the NiO flat band potential, explaining the dramatic drop of the photocurrent in acidic conditions (cyanoanilinium). By contrast, in weaker acid conditions (formic acid) the photocurrent increases and the key Rh(III) hydride intermediate was efficiently generated. In acetonitrile solution, Rh(III)-H slowly reacts with HCOOH to generate H-2. However, this process was not catalytic, because the reduction potential of the Ru sensitizer is not sufficiently negative to reduce the Rh(III)-H into Rh(II)-H.
机译:用几种铑和钴的H-2-演化催化剂研究了钌络合物敏化的介孔NiO电极的光电化学活性。在Rh(III)聚吡啶基配合物的存在下,通过辐照这种光电阴极可产生高达80μA/ cm(2)的光电流,而钴配合物几乎没有光电流。光解实验导致Rh(III)络合物的两电子还原形式转变为Rh(I)络合物,并证明了从NiO到催化剂的电子转移链的发生。莫特-肖特基(Mott-Schottky)实验证明了NiO平坦带电势对pH的依赖性,解释了在酸性条件下(氰基苯胺)光电流的急剧下降。相反,在较弱的酸条件(甲酸)下,光电流增加,并且有效生成了关键的氢化Rh(III)中间体。在乙腈溶液中,Rh(III)-H与HCOOH缓慢反应生成H-2。然而,该方法不是催化性的,因为Ru敏化剂的还原电势不足以使Rh(III)-H还原成Rh(II)-H。

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