首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Molybdenum disulfide quantum dots decorated bismuth sulfide as a superior noble-metal-free photocatalyst for hydrogen evolution through harnessing a broad solar spectrum
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Molybdenum disulfide quantum dots decorated bismuth sulfide as a superior noble-metal-free photocatalyst for hydrogen evolution through harnessing a broad solar spectrum

机译:钼二硫化物量子点装饰硫化物,作为氢气荧光催化剂,通过利用广泛的太阳光谱来氢化

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Molybdenum disulfide quantum dots (MoS(2)QDs) decorated bismuth sulfide (Bi2S3) photocatalyst was synthesized. Photoluminescence characterization showed that the as-developed MoS(2)QDs possessed intriguing up conversion and down-conversion properties, indicating their capability to harness energy from the light spectrum ranging from ultraviolet (UV) to near-infrared (NIR). In this study, the highest hydrogen yield of 17.7 mmol/g.h was achieved by 0.14MoS(2)QD/Bi2S3, which was almost 4.5 folds higher than that of undoped Bi2S3 under stimulated solar light irradiation. Furthermore, examination of the 0.14MoS(2)QD/Bi2S3 photo catalysts under NIR irradiation showed a significant photocurrent response and an accumulative H-2 yield of 53.6 mu mol/g after 6 h reaction. This is a major breakthrough as most photocatalysts can only be activated under UV and/or visible light irradiation. This work provides new insights into the design of MoS(2)QD/Bi2S3 for harnessing energy from a broad solar spectrum to photocatalytically split water to produce hydrogen.
机译:二硫化钼量子点(MOS(2)QDS)装饰硫化物(Bi2S3)光催化剂被合成。光致发光表征表明,发达的MOS(2)QD具有有趣的转换和下转换性能,表明其能力从紫外(UV)到近红外线(NIR)的光谱来利用来自光谱的能量。在该研究中,通过0.14MOS(2)QD / Bi2S3实现的最高氢产率为17.7mmol / g.h,其在刺激的太阳光照射下的未掺杂BI2S3高4.5倍。此外,在NIR辐射下的0.14MOS(2)QD / BI2S3光催化剂的检查显示出显着的光电流响应和6小时后53.6μmmol/ g的累积H-2产率。这是大多数光催化剂只能在UV和/或可见光照射下激活的重大突破。这项工作为MOS(2)QD / BI2S3的设计提供了新的洞察,用于利用从广泛的太阳光谱到光催化分割水以产生氢气。

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