首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Efficient photocatalytic H-2 evolution using NiS/ZnIn2S4 heterostructures with enhanced charge separation and interfacial charge transfer
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Efficient photocatalytic H-2 evolution using NiS/ZnIn2S4 heterostructures with enhanced charge separation and interfacial charge transfer

机译:使用NIS / Znin2S4异质结构具有增强的电荷分离和界面电荷转移的高效光催化H-2演化

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摘要

The effect of multidimensional heterostructures on charge transfer and charge separation is intriguing in photocatalytic applications. Herein, NiS/ZnIn2S4 heterostructures with tailorable composition, tunable light absorption, and controllable band gap were successfully prepared by a two-step method to show uniform NiS nanoparticles with an average size of 10 nm loaded homogeneously on porous ZnIn2S4 nanosheets. Consequently, NiS/ZnIn2S4 heterostructures have markedly enhanced light absorption and efficient photo catalytic efficiency, reaching the hydrogen evolution rate of 5.0 mmol h(-1) under the light irradiation at 420 nm, to be approximately three times higher than that of pure ZnIn2S4. The enhanced photocatalytic efficiency results from faster charge transfer and more efficient photogenerated electron-hole separation under beneficial band alignment. The results shed light on how the photocatalytic reaction occurs at the interface between NiS and ZnIn2S4, and can open a new avenue for synthesizing efficient photocatalysts.
机译:多维异质结构对电荷转移和电荷分离的影响是光催化应用中的迷恋。在此,通过两步方法成功地制备了具有可批准的组合物,可调谐光吸收和可控带隙的NIS / Znin2S4异质结构,以显示均匀的NIS纳米颗粒在多孔Znin2S4纳米晶片上均匀地装有10nm的平均尺寸为10nm。因此,NIS / Znin2S4异质结构具有显着提高了光吸收和有效的光催化效率,在420nm的光照射下达到5.0mmol H(-1)的氢进化速率,比纯Znin2S4高约三倍。增强的光催化效率从较快的电荷转移和更有效的光生电孔分离下产生更高的电荷转移和更有效的光带对准。结果阐明了光催化反应如何发生在NIS和Znin2S4之间的界面上,并且可以打开新的途径,用于合成有效的光催化剂。

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