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首页> 外文期刊>Catalysis science & technology >Efficient photocatalytic hydrogen evolution under visible light by ternary composite CdS@NU-1000/RGO
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Efficient photocatalytic hydrogen evolution under visible light by ternary composite CdS@NU-1000/RGO

机译:高效光催化氢进化通过三元复合可见光cds@nu - 1000 / RGO

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摘要

Herein, hydrogen production from an aqueous medium over a Zr(IV) metal-organic framework (NU-1000) under visible-light irradiation is presented. Photodeposition of CdS nanoparticles onto NU-1000 gives CdS@NU-1000. A ternary composite that hybridizes CdS with reduced graphene oxide (RGO) (different proportions) and NU-1000 was prepared (CdS@NU-1000/RGO). CdS@NU-1000 and CdS@NU-1000/1%RGO exhibit 9.35 and 12.1 times higher photocatalytic activities than commercial CdS under visible light, respectively. More importantly, in sharp contrast with the obvious deterioration in photoactivity of CdS, CdS@NU-1000/1%RGO displayed significantly enhanced photostability. This study clearly demonstrates the advantage of MOF supported CdS nanoparticles for enhancing the photocatalytic H-2 evolution activity with good stability.
机译:在此,水介质的氢在锆(IV)有机框架(ν- 1000)在可见光照射下。Photodeposition CdS纳米粒子到ν- 1000给cds@nu - 1000。跟光盘,减少氧化石墨烯(RGO)(不同比例)和ν- 1000年准备(cds@nu - 1000 / RGO)。CdS@NU-1000/1%RGO展览9.35和12.1倍更高的光催化比商业活动cd在可见光下,分别。重要的是,与明显形成鲜明对比恶化的光敏cd、CdS@NU-1000/1%RGO显示明显增强的耐光性。演示了财政部支持cd的优势纳米粒子增强光催化2进化活动具有良好的稳定性。

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