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Facile One-Step Synthesis of Hybrid Graphitic Carbon Nitride and Carbon Composites as High-Performance Catalysts for CO2 Photocatalytic Conversion

机译:轻质杂化氮化碳与碳复合材料的高效一步合成作为高效催化剂,用于CO2光催化转化

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摘要

Utilizing and reducing carbon dioxide is a key target in the fight against global warming. The photocatalytic performance of bulk graphitic carbon nitride (g-C3N4) is usually limited by its low surface area and rapid charge carrier recombination. To develop g-C3N4 more suitable for photocatalysis, researchers have to enlarge its surface area and accelerate the charge carrier separation. In this work, novel hybrid graphitic carbon nitride and carbon (H-g-C3N4/C) composites with various carbon contents have been developed for the first time by a facile one-step pyrolysis method using melamine and natural soybean oil as precursors. The effect of carbon content on the structure of H-g-C3N4/C composites and the catalytic activity for the photoreduction of CO2 with H2O were investigated. The results indicated that the introduction of carbon component can effectively improve the textural properties and electronic conductivity of the composites, which exhibited imporved photocatalytic activity for the reduction of CO2 with H2O in comparison with bulk g-C3N4. The highest CO and CH4 yield of 22.60 mu mol/g-cat. and 12.5 mu mol/g-cat., respectively, were acquired on the H-g-C3N4/C-6 catalyst with the carbon content of 3.77 wt % under 9 h simulated solar irradiation, which were more than twice as high as that of bulk g-C3N4. The remarkably increased photocatalytic performance arises from the synergistic effect of hybrid carbon and g-C3N4.
机译:利用和减少二氧化碳是对抗全球变暖的关键目标。本体石墨氮化碳(g-C3N4)的光催化性能通常受到其低表面积和快速载流子重组的限制。为了开发更适合光催化的g-C3N4,研究人员必须扩大其表面积并加快电荷载流子的分离。在这项工作中,通过三聚氰胺和天然大豆油为前体的简便的一步热解方法,首次开发了具有多种碳含量的新型杂化石墨碳氮化物和碳(H-g-C3N4 / C)复合材料。研究了碳含量对H-g-C3N4 / C复合材料结构的影响以及H2O光催化还原CO2的催化活性。结果表明,碳组分的引入可以有效地改善复合材料的质构性质和电子导电性,与大量的g-C3N4相比,碳对H2O的还原具有改善的光催化活性。最高的CO和CH4产率为22.60μmol / g-cat。在9 h模拟太阳辐射下,Hg-C3N4 / C-6催化剂上的碳含量为3.77 wt%,分别获得了12.5和12.5 mol / g-cat。的催化活性,其含量是体积的两倍以上。 g-C3N4。杂化碳和g-C3N4的协同作用显着提高了光催化性能。

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