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Improving hole transfer of boron nitride quantum dots modified PDI for efficient photodegradation
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作者 Shiqing Ma chundong peng +5 位作者 Zeyu Jia Yanmei Feng Kai Chen Hao Ding Daimei Chen Zhong-Yong Yuan 《Frontiers of Chemical Science and Engineering》 SCIE EI CSCD 2023年第11期1718-1727,共10页
In recent years,organic photocatalyst under visible-light absorption has shown significant potential for solving environmental problems.However,it is still a great challenge for constructing a highly active organic ph... In recent years,organic photocatalyst under visible-light absorption has shown significant potential for solving environmental problems.However,it is still a great challenge for constructing a highly active organic photocatalyst due to the low separation efficiency of photogenerated carriers.Herein,an effective and robust photocatalyst perylene-3,4,9,10-tetracarboxylic diamide/boron nitride quantum dots(PDI/BNQDs),consisting of selfassemble PDI withπ–πstacking structure and BNQDs,has been constructed and researched under visible light irradiation.The PDI/BNQDs composite gradually increases organic pollutant photodegradation with the loading amount of BNQDs.With 10 mL of BNQDs solution added(PDI/BNQDs-10),the organic pollutant photodegradation performance reaches a maximum,about 6.16 times higher with methylene blue and 1.68 times higher with ciprofloxacin than that of pure PDI supramolecular.The enhancement is attributed to improved separation of photogenerated carriers from self-assembled PDI by BNQDs due to their preeminent ability to extract holes.This work is significant for the supplement of PDI supramolecular composite materials.We believe that this photocatalytic design is capable of expanding organic semiconductors’potential for their applications in photocatalysis. 展开更多
关键词 PDI boron nitride quantum dots PHOTOCATALYSIS hole transfer
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