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首页> 外文期刊>Nanoscale >A direct Z-scheme PtS2/arsenene van der Waals heterostructure with high photocatalytic water splitting efficiency
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A direct Z-scheme PtS2/arsenene van der Waals heterostructure with high photocatalytic water splitting efficiency

机译:直接Z-scheme PtS2 / arsenene范德瓦耳斯异质结光催化水高分割效率

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摘要

To overcome current serious energy and environmental issues, photocatalytic water splitting holds great promise because it requires only solar energy as an energy input to produce hydrogen. In this work, based on first-principle calculations, we studied the van der Waals heterostructure formed by PtS(2)and arsenene (Are) monolayers that were successfully synthesized on a large scale at high quality. From an analysis of the migration paths of photoinduced electrons and holes, a direct Z-scheme photocatalytic mechanism is demonstrated in this heterostructure. Furthermore, the PtS2/Are direct Z-scheme heterostructure has decent band edge positions to promote the redox reaction to decompose water at pH 0. The interfacial charge difference and potential drop are presented, which further support the formation of a direct Z-scheme photocatalyst. More importantly, the PtS2/Are heterostructure has quite high solar-to-hydrogen (STH) efficiency (49.32%), significantly enhanced compared with isolated PtS2(12.67%) or Are (10.34%) monolayers. This direct Z-scheme PtS2/Are heterostructure with excellent STH efficiency suggests its promising application as a photocatalyst for water splitting.
机译:为了克服当前严重的能源和环境问题,光催化水将拥有更大的潜力,因为它需要只有太阳能作为能源生产的输入氢。计算,我们研究了范德瓦耳斯异质结构由分(2)和arsenene(是)成功的单层膜在高质量大规模合成。从分析的迁移路径光诱导电子和空穴,直接Z-scheme光催化机理在这种异质结构。PtS2 /直接Z-scheme异质结构体面的促进氧化还原带边沿位置反应分解水pH值0。界面电荷差异和潜在的下降,进一步支持哪一个形成直接Z-scheme光催化剂。更重要的是,PtS2 /异质结构有相当高的solar-to-hydrogen(某事)效率与相比(49.32%),显著增强孤立PtS2(12.67%)或单层(10.34%)。这种直接Z-scheme PtS2 /异质结构具有优良的某事表明其效率有前途的应用程序作为光催化剂水分裂。

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