Recent progress on the enhancement of photocatalytic properties of BiPO4 using π–conjugated materials
Semiconductor photocatalysis is regarded as most privileged solution for energy conversion and environmental application. Recently, photocatalysis methods using bismuth-based photocatalysts, such as BiPO4, have been extensively investigated owing to their superior efficacy regarding organic pollutan...
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Veröffentlicht in: | Advances in colloid and interface science 2020-06, Vol.280, p.102160-102160, Article 102160 |
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Sprache: | eng |
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Zusammenfassung: | Semiconductor photocatalysis is regarded as most privileged solution for energy conversion and environmental application. Recently, photocatalysis methods using bismuth-based photocatalysts, such as BiPO4, have been extensively investigated owing to their superior efficacy regarding organic pollutant degradation and their further mineralization into CO2 and H2O. It is well known that BiPO4 monoclinic phase exhibited better photocatalytic performance compared to Degussa (Evonik) P25 TiO2 in term of ultraviolet light driven organic pollutants degradation. However, its wide band gap, poor adsorptive performance and large size make BiPO4 less active under visible light irradiation. However, extensive research works have been conducted in the past with the aim of improving visible light driven BiPO4 activity by constructing a series of heterostructures, mainly coupled with π-conjugated architecture (e.g., conductive polymer, dye sensitization and carbonaceous materials). However, a critical review of modified BiPO4 systems using π-conjugated materials has not been published to date. Therefore, this current review article was designed with the aim of presenting a brief current state-of-the-art towards synthesis methods of BiPO4 in the first section, with an especial focuses onto its crystal-microstructure, optical and photocatalytic properties. Moreover, the most relevant strategies that have been employed to improve its photocatalytic activities are then addressed as the main part of this review. Finally, the last section presents ongoing challenges and perspectives for modified BiPO4 systems using π–conjugated materials.
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•Novel ideas on extending absorption edge of BiPO4 are critically reviewed.•Modification of BiPO4 via π–conjugated systems coupling as applied photocatalysts.•Reviews on the photocatalytic mechanisms of BiPO4/π–conjugated photocatalysts.•Future perspectives regarding novel BiPO4/π–conjugated photocatalysts. |
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ISSN: | 0001-8686 1873-3727 |
DOI: | 10.1016/j.cis.2020.102160 |