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In situ synthesis of Co2P-decorated red phosphorus nanosheets for efficient photocatalytic H-2 evolution

机译:原位合成Co2P-decorated赤磷nanosheets高效光催化2进化

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摘要

Red phosphorus (RP) as an elemental semiconductor photocatalyst has been employed for photocatalytic hydrogen (H-2) production owing to its relatively narrow band gap (about 1.72 eV), excellent absorption features in the visible region, and favourable band structure. In this work, cobalt phosphide (Co2P) as a noble-metal-free co-catalyst was first loaded on two-dimensional microporous RP nanosheets by a one-step in situ hydrothermal method. The investigations demonstrated that the introduction of Co2P nanoparticles could facilitate the separation and migration of photogenerated charge carriers and provide numerous catalytic active sites for photocatalytic H-2 evolution. Besides, the stability of the composites was greatly enhanced by the formation of Co-P bonds between RP and Co2P. As expected, 2% Co2P/RP showed the highest H-2 evolution rate of 5997.5 mu mol h(-1) g(-1), which was 7.0 times and 2.4 times higher than those of pristine RP (857.6 mu mol g(-1) h(-1)) and Pt/RP (2469.9 mu mol g(-1) h(-1)), respectively. Moreover, the one-step solution-phase synthesis technology can be extensively applied for other transition-metal-phosphide-based photocatalysts.
机译:红磷(RP)作为半导体元素光催化剂被用于光催化氢气(h2)由于生产其相对狭窄的带隙(1.72 eV),可见良好的吸收特性地区,有利的能带结构。工作,磷化钴(Co2P)noble-metal-free co-catalyst首次加载二维微孔的RP nanosheets一步法原位水热法。调查表明,引入Co2P纳米粒子可以促进photogenerated电荷的分离和迁移运营商和提供大量的催化活性网站的光催化氢进化。复合材料的稳定性是极大的增强了Co-P债券之间的形成RP和Co2P。2进化率最高为5997.5μ摩尔h (1)g(1), 7.0倍和2.4倍比原始的RP(857.6μ摩尔g (1)h(1))和Pt / RP(2469.9μ摩尔g (1) h (1)),分别。液相合成技术广泛应用于其他transition-metal-phosphide-based催化剂。

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