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Role of two-dimensional nanointerfaces in enhancing the photocatalytic performance of 2D-2D MoS2/CdS photocatalysts for H-2 production

机译:二维纳米叶片在提高H-2生产中提高2D-2D MOS2 / Cds光催化剂的光催化性能的作用

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Promoting the charge separation to improve photocatalytic performance of semiconductor photocatalysts is very important in the field of artificial photosynthesis. Here, we report the synthesis of 2D CdS micro/nano leaves combined with 2D MoS2 nanosheets cocatalyst for efficient photocatalytic H-2 production by visible light via a rapid and cost- effective hydrothermal method. This smart architecture of 2D-2D MoS2/CdS photocatalyst possesses remarkably large 2D nanointerfaces, which provides abundant channels for photoinduced charge transfer between CdS and MoS2. As demonstrated by the photoluminescence and transient photocurrent studies, the large 2D nanointerfaces can efficiently accelerate charge carrier transfer and separation, resulting in the superior photocatalytic performance and favorable stability of MoS2/CdS hybrid photocatalysts for visible-light-driven hydrogen evolution from water. As a consequence, the maximum H-2 evolution rate of 26.32 mmol.h(-1).g(-1) under visible light irradiation and an apparent quantum yield of 46.65% at 450 nm for hydrogen production are achieved on 6% MoS2/CdS, exceeding that of optimized Pt-loaded CdS photocatalyst. The findings indicate that 2D-2D photocatalysts possess great potential for efficient solar hydrogen generation.
机译:促进电荷分离以改善半导体光催化剂的光催化性能在人造光合作用领域非常重要。在此,我们报告了2D CDS微/纳米叶的合成与2D MOS2纳米蛋白酶助催化剂通过快速且经济高效的水热法通过可见光进行高效的光催化H-2生产。这款2D-2D MOS2 / CDS光催化剂的这种智能架构具有非常大的2D纳米件,可提供丰富的通道,用于CD和MOS2之间的光漏电荷转移。正如光致发光和瞬态光电流研究所证明的,大的2D纳米件可以有效地加速电荷载体转移和分离,导致MOS2 / Cds杂合光催化剂的优异的光催化性能和良好的稳定性,用于从水中获得可见光氢气的氢逸出。因此,在6%MOS2上实现了可见光照射下的26.32mmol.h(-1).g(-1)的最大H-2进化速率为26.32mmol.h(-1)。 / CD,超过优化的PT加载CDS光催化剂。结果表明,2D-2D光催化剂具有高效太阳能发电的潜力。

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