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Pristine hexagonal CdS assembled with NiV LDH nanosheet formed p-n heterojunction for efficient photocatalytic hydrogen evolution

机译:用NIV LDH纳米片组装的原始六方CD形成P-N异质结,用于有效的光催化氢进化

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摘要

Efficient charge utilization in photocatalysis are of great importance not only for improving photocatalytic hydrogen evolution, but also for achieving excellent performance of semiconductors applying for actual operation. Herein, it is demonstrated that by the way of providing an additional electric field, the migration efficiency of electron-hole pairs can be improved apparently. Specifically, for the first time, hexagonal CdS and NiV-layered double hydroxide (NiV LDH), both of them are reported to be one of the most promising materials in photo catalytic water splitting, is assembled with the mass ratio of ten to one to constract a novel p-n heterojunction photocatalyst named as CNV-2. The combination of p-type CdS and n-type NiV LDH can facilitate electrons and holes transfer and separation ultimately enhance photocatalytic hydrogen-production efficiency by providing an additional electric field. Furthermore, the delicate architecture and the excellent property in the absence of sacrificial agents is certified various characterization studies, which are in good consistent with each other, thereby confirming its potential of CNV-2p-n junction for the water-splitting reaction and energy storage.
机译:光催化的高效收费利用率非常重要,不仅用于改善光催化氢进化,而且为了实现施用实际操作的半导体的优异性能。这里,证明通过提供附加电场的方式,可以显然可以改善电子孔对的迁移效率。具体地,首次,六边形CD和NIV层双氢氧化物(NIV LDH),据报道,它们的光催化水分解中最有前景的材料之一,组装成10〜1至1〜1构建名为CNV-2的新型PN异质结光催化剂。 P型CD和N型NIV LDH的组合可以促进电子和孔的转移和分离最终通过提供额外的电场来增强光催化氢气生产效率。此外,在没有牺牲剂的情况下,微妙的结构和优异的性质是认证的各种表征研究,其良好彼此一致,从而确认其用于水分裂反应和能量储存的CNV-2P-N结的电位。

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