光催化
带隙
钙钛矿(结构)
载流子
材料科学
电子能带结构
纳米技术
分解水
光电子学
氧化还原
化学物理
化学
凝聚态物理
催化作用
物理
结晶学
生物化学
冶金
作者
José Luis Clabel Huamán,J. Chacaliaza-Ricaldi,E. Marega
标识
DOI:10.3389/fnano.2022.827925
摘要
Perovskite structures have attracted scientific interest as a promising alternative for water treatment due to their unique structural, high oxidation activity, electronic stability, and optical properties. In addition, the photocatalytic activity of perovskite structures is higher than that of many transition metal compounds. A critical property that determines the high-performance photocatalytic and optical properties is the band gap, lifetime of carrier charge, and band edges relative to the redox potential. Thus, the synthesis/processing and study of the effect on the band gap, lifetime of carrier charge, and band edges relative to the redox potential in the development of high-performance photocatalysts for water treatment are critical. This review presents the basic physical principles of optical band gaps, their band gap tunability, potentials, and limitations in the applications for the water treatment. Furthermore, it reports recent advances in the synthesis process and comparatively examines the band gap effect in the photocatalytic response. In addition to the synthesis, the physical mechanisms associated with the change in the band gap have been discussed. Finally, the conclusions of this review, along with the current challenges of perovskites for photocatalysis, are presented.
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