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首页> 外文期刊>Journal of Materials Science >Controlled calcination of ZnSe and ZnTe nanospheres to prepare visible-light catalysts with enhanced photostability and photoactivity
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Controlled calcination of ZnSe and ZnTe nanospheres to prepare visible-light catalysts with enhanced photostability and photoactivity

机译:ZnSe和ZnTe纳米球的受控煅烧以制备具有增强的光稳定性和光活性的可见光催化剂

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摘要

To obtain cheap, low-toxic, efficient and robust visible-light photocatalyst, a controlled calcination strategy is proposed for converting unstable ZnX (X=Se, Te) nanospheres (NSs) to ZnX-ZnO hybrid nanospheres (HNSs) with an appropriate composition and structure. Under such a conception, ZnSe-ZnO HNSs with various compositions were prepared by calcining ZnSe NSs under different conditions. Their morphology, composition, crystal structure, and optical absorption property were found to be highly dependent on their calcination condition. When serving as the catalyst for photodegrading organic dyes, they exhibited an attractive composition/structure-dependent photocatalytic activity and enhanced photostability. Particularly, the HNSs prepared by calcining at 500 A degrees C for 4.0 h demonstrated the highest photocatalytic activity and excellent photostability, only taking 4.5 and 5.5 h to degrade 97.3 % methylene blue (MB) and 93 % ethyl violet (EV), respectively, under visible irradiation. The reason why such HNSs possessed the best photocatalytic performance was then intensively explored from different points of view. Moreover, we also extended this calcination protocol to prepare ZnTe-ZnO HNSs, whose photocatalytic performance was proven to be much better than that of pure ZnTe NSs as expected. We believe the strategy for fabricating such hybrid nanospheres and the exploration on their excellent photocatalytic performance will definitely benefit the preparation of high-efficient visible-light catalyst as well as the better understanding of its composition/structure-dependent photocatalytic activity.
机译:为了获得廉价,低毒,高效且坚固的可见光光催化剂,提出了一种控制煅烧策略,用于将不稳定的ZnX(X = Se,Te)纳米球(NSs)转换为具有适当成分的ZnX-ZnO杂化纳米球(HNSs)和结构。在这种概念下,通过在不同条件下煅烧ZnSe NSs制备了具有各种组成的ZnSe-ZnO HNS。发现它们的形态,组成,晶体结构和光吸收性质高度依赖于它们的煅烧条件。当用作光降解有机染料的催化剂时,它们表现出有吸引力的组成/结构依赖性光催化活性和增强的光稳定性。特别地,通过在500 A的温度下煅烧4.0 h制备的HNS表现出最高的光催化活性和出色的光稳定性,仅需4.5和5.5 h即可分别降解97.3%的亚甲基蓝(MB)和93%的乙基紫(EV),在可见光照射下。然后,从不同的角度深入探讨了为什么这类HNS具有最佳的光催化性能。此外,我们还扩展了该煅烧方案,以制备ZnTe-ZnO HNS,其光催化性能被证明比预期的要好于纯ZnTe NSs。我们认为,制备此类杂化纳米球的策略及其对优异光催化性能的探索必将有益于高效可见光催化剂的制备以及对其组成/结构相关的光催化活性的更好理解。

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