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首页> 外文期刊>Catalysis science & technology >In situsynthesis of ultrafine metallic MoO2/carbon nitride nanosheets for efficient photocatalytic hydrogen generation: a prominent cocatalytic effect
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In situsynthesis of ultrafine metallic MoO2/carbon nitride nanosheets for efficient photocatalytic hydrogen generation: a prominent cocatalytic effect

机译:在超细金属situsynthesis MoO2 /碳氮化硅nanosheets高效光催化cocatalytic氢生成:突出效果

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摘要

The development of noble metal free and highly active cocatalysts is critically important and also challenging for the practical applications of photocatalytic hydrogen production. Here, ultrafine MoO(2)cocatalyst nanoparticles (<= 10 nm) werein situsolvothermally synthesized on carbon nitride nanosheets (CNSs). We found that the ultrafine MoO(2)nanoparticle decorated CNS exhibits higher electrocatalytic hydrogen evolution reaction (HER) performance than Pt-CNS. Besides, CNS with a curly thin nanosheet structure has an increased specific surface area and broadened bandgap after the solvothermal process compared to bulk carbon nitride (CN). Characterization results reveal that the strong interfacial interaction between metallic MoO(2)and CNS greatly promotes the photogenerated electrons extracted from CNS to MoO2, resulting in efficient electron excitation and charge transfer in the composite. Accordingly, the hydrogen production rate of 1.0 wt% MoO2/CNS is 3.4 and 1.6 times higher than that of the same mass noble-metal Pt loaded CN and CNS under visible light irradiation, respectively. This work may provide a guide for constructing non-noble metal cocatalyst modified materials for efficient photocatalytic hydrogen production.
机译:贵金属和高度自由的发展主动:是至关重要的实际应用也具有挑战性光催化制氢。超细MoO(2)助催化剂纳米颗粒(< = 10海里)里situsolvothermally合成氮化碳nanosheets (CNSs)。超细MoO(2)纳米颗粒装饰中枢神经系统展品更高electrocatalytic氢比Pt-CNS进化反应(她)性能。此外,卷曲的薄nanosheet中枢神经系统结构具有比表面积增加能带solvothermal后逐步扩大氮化过程相比,大部分碳(CN)。表征结果表明,强壮的人金属之间的界面相互作用MoO(2)和CNS photogenerated起到了巨大的促进作用电子从中枢神经系统中提取MoO2,导致在高效的电子激发和电荷在复合转移。氢气产率为1.0 wt % MoO2 /中枢神经系统相同的3.4和1.6倍质量贵金属Pt加载CN和中枢神经系统可见光照射,分别。工作可能为建设提供指导非贵金属助催化剂改性材料高效的光催化制氢。

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