首页> 外文期刊>Applied Surface Science >Excellent photocatalytic hydrogen production over CdS nanorods via using noble metal-free copper molybdenum sulfide (Cu2MoS4) nanosheets as co-catalysts
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Excellent photocatalytic hydrogen production over CdS nanorods via using noble metal-free copper molybdenum sulfide (Cu2MoS4) nanosheets as co-catalysts

机译:通过使用无贵金属的硫化铜钼(Cu2MoS4)纳米片作为助催化剂,在CdS纳米棒上产生优异的光催化制氢

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Charge carrier recombination and durability issues are major problems in photocatalytic hydrogen (H-2) evolution processes. Thus, there is a very important necessitate to extend an efficient photocatalyst to control charge-carrier dynamics in the photocatalytic system. We have developed copper molybdenum sulfide (Cu2MoS4) nanosheets as co-catalysts with CdS nanorods for controlling charge carriers without recombination for use in photocatalytic H-2 evolution under simulated solar light irradiation. Effective control and utilization of charge carriers are possible by loading Cu2MoS4 nanosheets onto the CdS nanorods. The loading compensates for the restrictions of CdS, and stimulated synergistic effects, such as efficient photoexcited charge separation, lead to an improvement in photostability because of the layered structure of the Cu2MoS4 nanosheets. These layered Cu2MoS4 nanosheets have emerged as novel and active replacements for precious noble metal co-catalysts in photocatalytic H-2 production by water splitting. We have obtained superior H-2 production rates by using Cu2MoS4 loaded CdS nanorods. The physicochemical properties of the composites are analyzed by diverse characterization techniques. (C) 2016 Elsevier B. V. All rights reserved.
机译:载流子复合和耐久性问题是光催化氢(H-2)释放过程中的主要问题。因此,非常重要的必要是扩展有效的光催化剂以控制光催化系统中的电荷载流子动力学。我们已经开发了硫化铜钼(Cu2MoS4)纳米片作为与CdS纳米棒的助催化剂,用于控制电荷载流子而无需重组,用于模拟太阳光照射下光催化H-2的演化。通过将Cu2MoS4纳米片加载到CdS纳米棒上,可以有效控制和利用载流子。负载补偿了CdS的限制,并且由于Cu2MoS4纳米片的层状结构,刺激的协同效应(例如有效的光激发电荷分离)导致了光稳定性的提高。这些层状的Cu2MoS4纳米片已成为水分解光催化H-2生产中贵金属助催化剂的新型活性替代物。通过使用负载Cu2MoS4的CdS纳米棒,我们获得了卓越的H-2生产率。通过多种表征技术分析了复合材料的物理化学性质。 (C)2016 Elsevier B. V.保留所有权利。

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