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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Phase transformation and microwave hydrothermal guided a novel double Z-scheme ternary vanadate heterojunction with highly efficient photocatalytic performance
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Phase transformation and microwave hydrothermal guided a novel double Z-scheme ternary vanadate heterojunction with highly efficient photocatalytic performance

机译:相变和微波热热引导新型双Z方案三元钒酸盐异质结具有高效的光催化性能

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Semiconductor-based heteronanostructures with the high carriers-flow steering and high activity and stability in the visible-light-driven multicomponent photocatalytic system have been of great concern due to its long-standing demand in the wide application of environmental protection and energy conversion. However, the construction of ternary-component nanocrystals usally undergos multiple complex steps to restrict its application. In the work, we successfully report the facile design and synthesis of a novel double Z-scheme Zn-3(VO4)(2)/Zn2V2O2/ZnO ternary heteronanostructure system (THS) via self-phase transition with heating on basis of the Zn-3(OH)(2)V2O7 center dot 2H(2)O precursor in a low-cost microwave hydrothermal assistant, which exhibited excellent photocatalytic performances. In this case, the employment of Zn-3(OH)(2)V2O7 center dot 2H(2)O as the heteronanostructure precursor is the key for fabricating the THS material, which not only boosted the interaction with its structure and but also maintained the mesoporous nanosheet structure. It has been proved that Zn-3(OH)(2)V2O2 center dot 2H(2)O firstly lost it H2O and then the partial Zn-3(VO4)(2) underwent the self-phase transition process to produce Zn2V2O2 and ZnO (Zn-3(OH)(2)V2O2 center dot 2H(2)O - Zn-3(VO4)(2) - Zn2V2O2 + ZnO), which obtained the double Z-scheme THS. Accordingly, the interfacial-dominated photocatalysis reactivities such as the removal of phenols and dyes were used as ideal experiments to verify the responsibility of the constructed double Z-scheme THS material that was equipped with the narrow band gap, intimate contact interface, the wide visible light absortion and more efficient charge transfer and separation for high visible-light photocatalytic reactivity and stable cycling. PL spectra, radicals trapping experiments and ESR tests confirmed that the nontraditional transport of photoinduced h(+) and e(-) caused by double Z-scheme mechanism played an important role in the efficient removing the target pollutants. Such a synthetic approach maybe render double Z-scheme THS to advance the development for largescale applications of the hetero-transition metal vanadates.
机译:基于半导体的异共体结构,具有高载体 - 流动转向和高活性和稳定性,在可见光驱动的多组分光催化系统中具有很大的关注,因为在广泛应用环境保护和能量转换方面的长期需求是非常重要的。然而,三元组分纳米晶体的构建潜水上的多个复杂步骤限制了其应用。在该工作中,我们通过自相过渡通过自相过渡进行了加热,成功地报告了新型双Z-Scheme Zn-3(VO4)(2)/ Zn2V2V202 / ZnO三核苷酸结构系统(THS)的内容设计和合成-3(OH)(2)V2O7中心点2H(2)O在低成本微波水热助剂中的前体,其表现出优异的光催化性能。在这种情况下,作为杂核结构前体的Zn-3(OH)(2)v2O7中心点2H(2)o的就业是制造THS材料的钥匙,这不仅提高了与其结构的相互作用,而且还保持了中孔纳米片结构。已证明Zn-3(OH)(2)V2O2中心点2H(2)o首先丢失H 2 O,然后将部分Zn-3(VO4)(2)进行了自相过渡过程以产生Zn2V2O2和ZnO(Zn-3(OH)(2)V2O2中心点2H(2)O - > Zn-3(VO4)(2) - & Zn2V2O2 + ZnO),得到双Z方案THS。因此,使用诸如去除酚和染料的界面主导的光催化反应是理想的实验,以验证配备有窄带隙,亲密接触接口,宽可见的宽带隙的构建双Z方案THS材料的责任轻微的凹凸和更有效的电荷转移和高可见光光催化反应性和稳定循环的分离。 PL光谱,自由基诱捕实验和ESR试验证实,由双Z方案机制引起的光诱导H(+)和E( - )的非传统传输在有效的去除目标污染物中起重要作用。这种合成方法可以使双Z方案THS推进异质过渡金属钒酸盐的大型应用的发展。

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