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N-doped and sulfur vacancy-rich TiO2@SnS2 nanoporous arrays for the plasmonic photocatalytic H-2 evolution

机译:用于等离子体光催化H-2演化的N掺杂和富硫空位TiO2@SnS2纳米阵列

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摘要

An elegant templating method has been developed for the rational design and synthesis of hierarchical SnS2 nanoclusters composed of ultrathin nanosheets and embedded inside TiO2 nanoporous arrays. Herein, benefiting from their unique structural merits and metal-like plasmonic activity, the TiO2@SnS2 heterostructures exhibit enhanced photocatalytic H-2 evolution properties in terms of good cycling performance. S vacancies and N-doping are proved to be vitally important to the electronic structures and bandgap of SnS2, thus in-fluence the plasmonic property and separation of photo-carriers. The optimized TiO2@6-nmSnS(2)/N nanoporous arrays give an ultra-high H-2 yield rate of 285 mmol h(-1)cm(-2) under a low catalyst loading mass, that comparable to most noble metal catalysts. Remarkable cycling performance with a capability retention of 90 is achieved after 30 h under solar light illumination. As an innovative exploration, this study demonstrates that the photocatalytic activities of nonmetal, earth-abundant SnS2 can be enhanced with plas-monic effect, which may serve as an excellent catalytic agent for solar energy conversion to chemical fuel. (c) 2023 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:已经开发了一种优雅的模板化方法,用于合理设计和合成由超薄纳米片组成并嵌入TiO2纳米多孔阵列中的多级SnS2纳米团簇。本文,得益于其独特的结构优点和类金属等离子体活性,TiO2@SnS2异质结在良好的循环性能方面表现出增强的光催化H-2析出性能。S空位和N掺杂对SnS2的电子结构和带隙至关重要,从而影响了光载流子的等离子体性质和分离。优化后的TiO2@6-nmSnS(2)/N纳米多孔阵列在低催化剂负载质量下实现了285 mmol h(-1)cm(-2)的超高H-2产率,与大多数贵金属催化剂相当。在太阳光照射下 30 小时后,可实现 90% 的显着循环性能。作为一项创新探索,本研究表明,非金属、地球富量SnS2的光催化活性可以通过塑料效应得到增强,可作为太阳能转化为化学燃料的优良催化剂。(c) 2023 Hydrogen Energy Publications LLC. 由 Elsevier Ltd. 出版。保留所有权利。

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