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- W3186086762 abstract "• Photocatalytic, flexocatalytic and photo-flexocatalytic activities of Ag 2 MoO 4 were investigated. • The role of flexoelectricity in the photoexcited carrier separation and photocatalysis was elucidated. • The mechanism of flexoelectricity induced photocatalysis was discussed. • The potential application of photo-flexocatalysis Ag 2 MoO 4 was investigated. In this paper, we have elucidated the role of flexoelectricity in the photoexcited carrier separation and photocatalysis enhancement by comparatively investigating the photocatalytic, flexocatalytic and flexo-photocatalytic activities of centrosymmetric Ag 2 MoO 4 photocatalyst for degrading methylene blue (MB). Ultrasonic vibration was used to induce the flexoelectric effect in Ag 2 MoO 4 , and the flexo-photocatalytic experiment was performed by simultaneously irradiating the reaction solution with simulated sunlight and ultrasonic wave. It is demonstrated that the photo-flexocatalysis of Ag 2 MoO 4 is much higher than its single photocatalysis and flexocatalysis, implying an obvious flexoelectricity-enhanced mechanism of photocatalysis. To incorporate the photo-flexocatalysis of Ag 2 MoO 4 into practical application in environmental purification, the effects of initial MB concentration, catalyst dosage, pH and various anions on the flexo-photocatalytic degradation of MB over Ag 2 MoO 4 were investigated. Flexo-photocatalytic degradation of methyl orange (MO)/rhodamine B (RhB)/MB mixture dyes and other organic pollutants including tetracycline hydrochloride (TC) and ciprofloxacin (CIP) were also investigated, further confirming the excellent flexo-photocatalytic performance of Ag 2 MoO 4 ." @default.
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- W3186086762 date "2021-11-01" @default.
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- W3186086762 title "Flexoelectricity-induced enhancement in carrier separation and photocatalytic activity of a photocatalyst" @default.
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- W3186086762 doi "https://doi.org/10.1016/j.apsusc.2021.150669" @default.
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