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首页> 外文期刊>RSC Advances >Enhancement of photocatalytic hydrogen evolution with catalysts based on carbonized MOF-5 and g-C3N4
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Enhancement of photocatalytic hydrogen evolution with catalysts based on carbonized MOF-5 and g-C3N4

机译:基于碳化的MOF-5和G-C3N4的催化剂增强光催化氢气越野

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The study presents enhancement of photocatalytic hydrogen generation after metal–organic framework (MOF5) carbonization at 700 °C and its utilization as a co-catalyst of graphitic carbon nitride (gCN). Thermal treatment of MOF5 affected the formation of ZnO nanoparticles which played the role of co-catalyst for H _(2) evolution. Moreover, significant band-gap narrowing of MOF5 was observed, which also affected the narrowing of the hybrid band gap. The appropriate conduction band position of the carbonized MOF allowed photogenerated electron transfer from gCN to the carbonized MOF, hence, improving the separation of the charge carriers and reducing the overpotential for H _(2) generation. The mechanism of the photocatalytic process was also discussed.
机译:该研究介绍了金属 - 有机骨架(MOF5)碳化后的光催化氢气产生的增强及其作为石墨氮化物(GCN)的助催化剂的利用。 MOF5的热处理影响了ZnO纳米颗粒的形成,该ZnO纳米粒子发挥了H→(2)进化的助催化剂的作用。此外,观察到MOF5的显着带间隙变窄,这也影响了混合带隙的缩小。碳化的MOF的适当导通带位置允许从GCN到碳化的MOF的光生电子转移,从而改善电荷载流子的分离并减少H _(2)产生的过电位。还讨论了光催化过程的机制。

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