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Co3C as a promising cocatalyst for superior photocatalytic H-2 production based on swift electron transfer processes

机译:CO3C作为基于Swift电子转移过程的优质光催化H-2生产的有前途的助催化剂

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Photocatalytic hydrogen production using solar energy has been envisaged as an ultimate energy solution for the future. However, expensive and noble-metal based photocatalysts limit its industrial applications. Herein, highly efficient photocatalytic H-2 production has been achieved using Co3C as a noble-metal-free cocatalyst on CdS nanorods (NRs). An enhanced hydrogen evolution rate of 315 mu mol h(-1) was obtained using the optimized photocatalyst. 420 nm light, an apparent quantum yield of 19% was achieved which is among the best reported carbide-based catalysts. To study the versatile role of Co3C as a cocatalyst, ZnIn2S4 and g-C3N4 nanosheets were employed as photosensitizers. The obtained results successfully demonstrated that Co3C has the ability to play a role as a universal cocatalyst for photocatalytic H-2 production. Electrochemical and spectroscopic studies were utilized to propose an appropriate mechanism for the present excellent photocatalytic H-2 production. This study showed that Co3C has excessive potential as a promising cocatalyst for inexpensive H-2 production.
机译:利用太阳能进行光催化制氢被认为是未来的终极能源解决方案。然而,昂贵的贵金属基光催化剂限制了其工业应用。在本文中,使用Co3C作为CdS纳米棒(NRs)上的无贵金属辅助催化剂,实现了高效的光催化H-2生产。优化后的光催化剂的析氢速率提高了315μmol h(-1)。在420 nm光照下,表观量子产率达到19%,是报道最好的碳化物基催化剂之一。为了研究Co3C作为辅助催化剂的多功能作用,我们使用ZnIn2S4和g-C3N4纳米片作为光敏剂。所得结果成功地证明了Co3C能够作为光催化H-2生产的通用辅助催化剂发挥作用。电化学和光谱研究被用来提出一个合适的机制,目前良好的光催化H-2的生产。这项研究表明,Co3C作为廉价H-2生产的有前途的辅助催化剂具有极大的潜力。

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