首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Highly efficient photocatalytic hydrogen generation of g-C3N4-CdS sheets based on plasmon-enhanced triplet triplet annihilation upconversion
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Highly efficient photocatalytic hydrogen generation of g-C3N4-CdS sheets based on plasmon-enhanced triplet triplet annihilation upconversion

机译:基于等离子体增强三联三联三联湮灭的高效光催化氢生成G-C3N4-CDS片材上变化

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Herein we first coupled a wide photo-response photocatalyst with plasmon-enhanced triplet - triplet annihilation upconversion (TTA-UC) nanoparticles for photocatalytic hydrogen generation. The plasmon-based enhancement of TTA-UC was achieved by introducing Au nanoparticles into the core liquid of TTA-UC nanoparticles containing platinum(II)-octaethylporphyrin and 9,10-diphenylanthracene. Au-TTA nanoparticles encapsulated by silica shells significantly increased the green-to-blue upconversion compared with TTA nanoparticles. The silica shells after further surface functionalization can conjoin with photocatalysts. To improve the stability of cadmium sulfide (CdS), graphitic carbon nitride (g-C3N4) was combined with CdS for g-C3N4-CdS heterojunctions. g-C3N4-CdS sheets based on Au-enhanced TTA-UC can utilize the upconverted high-energy photons and thereby realized efficient photocatalytic hydrogen production. Au-TTA nanoparticles conjoined with g-C3N4-CdS reached a high hydrogen production of 16.88 mmol g(-1) under visible-light irradiation and an apparent quantum efficiency of 1.439% under green-light irradiation. The study provides a new TTA-supported upconversion-photocatalysis system enhanced by Au plasmon resonance effect for effectively hydrogen generation.
机译:这里我们首先耦合宽的光响应光催化剂,其用于光催化氢气的等离子体增强的三态 - 三重态湮灭上变化(TTA-UC)纳米颗粒。通过将Au纳米颗粒引入含有铂(II) - 乙基卟啉和9,10-二苯基蒽的TTA-UC纳米颗粒的核心液体来实现TTA-UC的基于血浆的增强。与TTA纳米颗粒相比,通过二氧化硅壳包封的Au-TTA纳米颗粒显着增加了绿色对蓝色上转化。在进一步表面官能化之后的二氧化硅壳可以与光催化剂混合。为了提高硫化镉(Cds)的稳定性,将石墨碳氮化物(G-C3N4)与CdS与G-C3N4-CDS异质结合。基于AU增强TTA-UC的G-C3N4-CDS板可以利用上络的高能量光子,从而实现有效的光催化氢气产生。与G-C3N4-CD联合的AU-TTA纳米颗粒在可见光照射下达到16.88mmol G(-1)的高氢气产生,并且在绿光照射下表观量子效率为1.439%。该研究提供了一种新的TTA支持的上转换 - 光催化系统,通过Au等离子体共振效应得到了有效的氢气产生。

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