光催化
铋
材料科学
异质结
环境修复
纳米技术
光降解
环境友好型
兴奋剂
催化作用
化学
光电子学
有机化学
冶金
生态学
污染
生物
作者
Ziwei Wang,Ming Chen,Danlian Huang,Guangming Zeng,Piao Xu,Chengyun Zhou,Cui Lai,Han Wang,Min Cheng,Wenjun Wang
标识
DOI:10.1016/j.cej.2019.06.018
摘要
• BiOX-based nanomaterials for environmental remediation are reviewed. • Optimized strategies for the improvement of photocatalytic activity are elaborated. • Structure-activity relationship from band gaps and surface engineering are proposed. • Possible improvements and outlooks of BiOX in photocatalysis are investigated. Bismuth oxyhalide (BiOX) photocatalysts have attracted tremendous attentions due to their unique optical and electronic properties. However, pristine BiOX suffered from inherent drawbacks and unsatisfactory photocatalytic performance. Interest in engineering layered structure BiOX for efficient environment remediation has grown exponentially. Recent studies tend to focus on alloying, bismuth-rich strategies, defect introduction, element doping. Therefore, the aim of this review is to summarize multiply structural optimized strategies for the improvement of their photocatalytic applications in environmental remediation. The distinct photochemical properties and synthesis method of alloyed, bismuth-rich, doped and defect-introduced BiOX are detailly elaborated based on the discussion of the structure-property relationship. The other methods such as heterojunction, facet effect, surface plasmonic resonance and strain engineering are briefly introduced. Subsequently, environmental applications in aquatic pollutants photodegradation and air purification are also discussed. Finally, challenges and outlooks covering synthetic strategies, characterization, and applications are featured.
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