首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Photocatalytic Activities of Graphitic Carbon Nitride Powder for Water Reduction and Oxidation under Visible Light
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Photocatalytic Activities of Graphitic Carbon Nitride Powder for Water Reduction and Oxidation under Visible Light

机译:可见光下石墨化氮化碳粉的光催化还原和氧化作用

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摘要

Graphitic carbon nitride (g-C3N4) with a band gap of 2.7 eV is studied as a nonmetallic photocatalyst for H2 or O2 evolution from water under ultraviolet (UV) and visible light. The g-C3N4 catalyst exhibits activities for water reduction into H2 or water oxidation into O2 in the presence of a proper sacrificial electron donor or acceptor, respectively, even without the need for precious metal cocatalysts. When bis(l,5-cyclooctadi-ene)platinum complex [Pt(cod)2] (a nonionic complex) is used as a precursor of Pt cocatalyst instead of H2PtCl6 (an ionic complex), enhanced H2 evolution activity is acquired. This difference in activity is primarily due to the better dispersion of Pt nanoparticles on g-C3N4, which is considered to originate from the better access of Pt(cod)2 to the g-C3N4 surface, as compared to that of H2PtCl6 in the preparation process. Unmodified g-C3N4 produces O2 from an aqueous silver nitrate solution upon UV irradiation (λ > 300 nm), although N2 release due to self-decomposition of g-C3N4 by photogenerated holes takes place. Modification of g-C3N4 with RuO2 improves not only O2 evolution activity but also stability against the self-decomposition, resulting in stable visible-light-driven O2 evolution (λ > 420 nm).
机译:研究了带隙为2.7 eV的石墨化碳氮化物(g-C3N4)作为非金属光催化剂,用于在紫外线(UV)和可见光下从水中释放出H2或O2。即使在不需要贵金属助催化剂的情况下,g-C3N4催化剂在适当的牺牲电子给体或受体的存在下也分别具有将水还原成H2或将水氧化成O2的活性。当使用双(1,5-环辛二烯-烯)铂配合物[Pt(cod)2](非离子配合物)代替H2PtCl6(离子配合物)作为Pt助催化剂的前体时,可以获得增强的H2放出活性。活性上的这种差异主要是由于Pt纳米颗粒在g-C3N4上的分散性更好,这被认为是与制剂中的H2PtCl6相比,Pt(cod)2更好地进入g-C3N4表面的缘故处理。未改性的g-C3N4在紫外线照射下(λ> 300 nm)从硝酸银水溶液中产生O2,尽管由于g-C3N4被光生空穴自分解而释放了N2。用RuO2修饰g-C3N4不仅可以改善O2的析出活性,而且还可以提高抗自分解的稳定性,从而导致可见光驱动的O2析出稳定(λ> 420 nm)。

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