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引用次数: 0
摘要
氧化锌(ZnO)是一种具有广泛应用前景的材料,可用于气体传感、光子学、光伏、能量转换、水分离、光催化和透明捕集等领域。然而,由于光生电子-空穴对(电荷)少、量子效率低和电荷重组率高,氧化锌对可见光的响应能力有限。在这篇综述中,我们探讨了创新策略,包括通过分析 118 个参考源掺入稀土元素作为电子陷阱,以减少 ZnO 的重组电荷。我们发现,水热法是在 60 分钟内将效率提高到 100%的好方法。我们发现,掺杂稀土金属 La 和 Ce 的氧化锌在 120 分钟的辐照时间内效率最高,可达 100%,这意味着它们是减少电荷重组的有效陷阱。掺杂稀土的氧化锌将增强光生电子-空穴对的潜力,通过氧化和还原反应催化自由基原子的生成。这篇综述囊括了最新的研究成果,是学者们了解掺稀土氧化锌光催化剂和开发创新光催化技术的宝贵资料。
Advances in Rare Earth-Doped ZnO Photocatalysts: Enhancing Photogenerated Electron-Hole Pairs for Radical Atom Generation
Zinc oxide (ZnO) is a promising material with a diverse range of applications, spanning gas sensing, photonics, photovoltaics, energy conversion, water splitting, photocatalysis, and transparent trapping. However, ZnO limited responsiveness to visible light affected to low photogenerated electron-hole pairs (charge), low quantum efficiency, and high recombination of charge. In this review, we are addressing innovative strategies, including incorporation rare earth elements as a trap of electron to reduce recombination charge via ZnO doping from analysis 118 referenced sources. We found that hydrothermal shows very good methods for boosting efficiency up to 100 % within 60-min. We found that for rare-earth metals La and Ce as a doping show highest efficiency up to 100 % within 120 min irradiations, means that efficient as a trap for reducing recombination of charge. The potential of rare earth doped ZnO will enhance photogenerated electron-hole pairs, catalyzing the generation of radical atoms via oxidation and reduction reactions. This review encapsulates the most current findings, it serves as a valuable resource for scholars seeking to advance their understanding of rare earth doped ZnO photocatalysts and developing innovative photocatalytic technologies.
ChemBioEng ReviewsBiochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
7.90
自引率
2.10%
发文量
45
期刊介绍:
Launched in 2014, ChemBioEng Reviews is aimed to become a top-ranking journal publishing review articles offering information on significant developments and provide fundamental knowledge of important topics in the fields of chemical engineering and biotechnology. The journal supports academics and researchers in need for concise, easy to access information on specific topics. The articles cover all fields of (bio-) chemical engineering and technology, e.g.,