首页> 外文期刊>Photochemical & photobiological sciences: the official journal of the European Photochemistry Association and the European Society for Photobiology >Photocatalytic reduction of CO2 based on a CeO2 photocatalyst loaded with imidazole fabricated N-doped graphene and Cu(II) as cocatalysts
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Photocatalytic reduction of CO2 based on a CeO2 photocatalyst loaded with imidazole fabricated N-doped graphene and Cu(II) as cocatalysts

机译:基于CEO2光催化剂的CO2的光催化还原与咪唑制成的N-掺杂石墨烯和Cu(II)作为助催化剂

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摘要

Cocatalysts are vital for improving photocatalytic activity. Incorporating nitrogen atoms on a graphene frame using an imidazole cycle resulted in a new N-doped graphene (denoted as ING). Cerium(IV) oxide (CeO2) nanoparticles were dispersed on ING sheets, producing an ING/CeO2 hybrid material. The ING/CeO2 hybrid material was characterized using X-ray diffraction, transmission electron microscopy, Raman spectroscopy, ultraviolet-visible diffuse reflectance spectroscopy and surface photovoltage spectroscopy. Copper(II) ions [Cu(II)] were adsorbed on the ING/CeO2 hybrid material to directly form Cu(II)/ING/CeO2, which could capture the photogenerated electrons to reduce carbon dioxide (CO2) to methanol (CH3OH) under incident light irradiation. The results showed that the yield from reducing CO2 to CH3OH during the photocatalytic process using Cu(II)/ING/CeO2 as the photocatalyst approached 385.8 mu mol g(-1) cat. h(-1), whereas the yield was only 3.57 mu mol g(-1) cat. h(-1) using ING/CeO2 as the photocatalyst. This shows that the Cu(II) ions play a vital role during photocatalytic reduction of CO2 by forming copper(I) ions [Cu(I)]. The percentage of ING in the ING/CeO2 hybrid material was investigated, and the results indicated that 3.6% of ING achieved an optimal yield of CH3OH during the photo-reduction process. The simultaneous roles of Cu(II) ions and ING sheets demonstrate a synergistic strategy for improving the photocatalytic CO2 reduction.
机译:助催化剂对改善光催化活动至关重要。使用咪唑循环将氮原子掺入石墨烯框架上,得到新的N掺杂石墨烯(表示为ING)。将铈(IV)氧化铈(CeO 2)纳米颗粒分散在ing片上,产生ING / CeO 2杂化材料。使用X射线衍射,透射电子显微镜,拉曼光谱,紫外线可见漫射反射光谱和表面光电光谱,表征ING / CEO2杂化材料。将铜(II)离子[Cu(II)]吸附在ING / CeO 2杂化材料上,直接形成Cu(II)/ ing / CeO 2,其可以捕获光生电子以将二氧化碳(CO 2)降至甲醇(CH 3 OH)在入射光照射下。结果表明,在光催化过程中,使用Cu(II)/ ing / CeO 2在光催化剂接近385.8μmolg(-1)猫时,在光催化过程中将CO 2至CH 3 OH中的产率降低至CH 3 OH。 H(-1),而产量仅为3.57 mm mol g(-1)猫。 H(-1)使用ING / CEO2作为光催化剂。这表明Cu(II)离子通过形成铜(I)离子[Cu(I)]在Co 2的光催化还原期间发挥重要作用。研究了ING / CEO2杂化材料中的百分比,结果表明,3.6%的ING在光还原过程中实现了CH 3 OH的最佳产率。 Cu(II)离子和InG纸张的同时作用证明了改进改善光催化二氧化碳还原的协同策略。

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