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首页> 外文期刊>New Journal of Chemistry >Design and construction of the sandwich-like Z-scheme multicomponent CdS/Ag/Bi2MoO6 heterostructure with enhanced photocatalytic performance in RhB photodegradation
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Design and construction of the sandwich-like Z-scheme multicomponent CdS/Ag/Bi2MoO6 heterostructure with enhanced photocatalytic performance in RhB photodegradation

机译:RhB光降解中具有增强光催化性能的三明治型Z方案多组分CdS / Ag / Bi2MoO6异质结构的设计与构建

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A sandwich-like Z-scheme tricomponent CdS/Ag/Bi2MoO6 photocatalytic system was rationally designed and successfully fabricated, in which Ag was loaded onto Bi2MoO6 microspheres by a facile photoreduction method and CdS was subsequently deposited onto the surface of Bi2MoO6 and Ag/Bi2MoO6 through a deposition-precipitation method. During this process, a series of Ag/Bi2MoO6 and CdS/Bi2MoO6 were also prepared. All the composites were characterized by XRD, TEM, SEM, EDX, XPS, UV-vis DRS, and IR spectra to confirm the successful integration of Ag or (and) CdS with Bi2MoO6, the alteration of morphology and the formation of a new phase before and after Ag or (and) CdS loading. The degradation of rhodamine B (RhB) dye under visible light irradiation (>420 nm) revealed that the CdS/Ag/Bi2MoO6 composite exhibited a highly visible-light-responsive photocatalytic performance compared to single Bi2MoO6 or CdS and dual Ag/Bi2MoO6 or CdS/Bi2MoO6. The enhanced photocatalytic performance of CdS/Ag/Bi2MoO6 was ascribed to its special structure - a typical Z-scheme photocatalytic system, in which Ag nanoparticles directly connected to the surface of CdS and Bi2MoO6 to form a solid-solid interface (ohmic contact), acting as a conductor that greatly shortened the distance for photogenerated electron transfer and combined photogenerated electrons from the CB of Bi2MoO6 with the photogenerated holes from the VB of CdS through ohmic contact, and thereby led to the efficient separation of photogenerated electrons and holes and showed stable and strong reducibility and oxidizability. Moreover, the surface plasmon resonance effect of metallic Ag nanoparticles also played an important role in the enhanced photocatalytic performance of RhB degradation under visible light irradiation. Furthermore, investigations on photoluminescence and photoelectrochemical properties also demonstrated indirectly the highly efficient separation of photogenerated electrons and holes in the Z-scheme CdS/Ag/Bi2MoO6 photocatalytic system. This new Z-scheme photocatalytic system will be applied to more photoreactions in further exploration.
机译:合理设计并成功制备了三明治状的Z型三组分CdS / Ag / Bi2MoO6光催化体系,其中,通过简便的光还原法将Ag负载在Bi2MoO6微球上,然后通过CdS沉积到Bi2MoO6和Ag / Bi2MoO6的表面。沉积沉淀法。在此过程中,还制备了一系列的Ag / Bi2MoO6和CdS / Bi2MoO6。通过XRD,TEM,SEM,EDX,XPS,UV-vis DRS和IR光谱对所有复合材料进行表征,以确认Ag或(和)CdS与Bi2MoO6的成功整合,形态的改变和新相的形成在加载Ag或(和)CdS之前和之后。罗丹明B(RhB)染料在可见光照射下(> 420 nm)的降解表明,与单一Bi2MoO6或CdS和双重Ag / Bi2MoO6或CdS相比,CdS / Ag / Bi2MoO6复合材料表现出高可见光响应光催化性能。 / Bi2MoO6。 CdS / Ag / Bi2MoO6的增强的光催化性能归因于其特殊的结构-典型的Z方案光催化系统,其中Ag纳米颗粒直接连接到CdS和Bi2MoO6的表面以形成固-固界面(欧姆接触),充当导体,大大缩短了光生电子转移的距离,并通过欧姆接触将Bi2MoO6的CB中的光生电子与CdS的VB中的光生空穴相结合,从而导致光生电子和空穴的有效分离,并表现出稳定的作用还原性和氧化性强。此外,金属Ag纳米粒子的表面等离振子共振效应在可见光辐照下增强RhB降解的光催化性能中也起着重要作用。此外,对光致发光和光电化学性质的研究还间接证明了Z方案CdS / Ag / Bi2MoO6光催化系统中光生电子和空穴的高效分离。这种新的Z方案光催化系统将用于进一步的光反应。

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