Issue 39, 2020, Issue in Progress

Real roles of perylene diimides for improving photocatalytic activity

Abstract

Three novel visible-light-driven composite photocatalysts: five-membered O-heterocyclic annulated perylene diimide doped TiO2 (PDI-1/TiO2), 1-phenol-N,N′-dicyclohexyl perylene-3,4,9,10-tetracarboxylic diimide doped TiO2 (PDI-2/TiO2), and N,N′-dicyclohexyl perylene diimide doped TiO2 (PDI-3/TiO2), were synthesized using a hydrothermal synthesis method. The effects of introducing PDIs with different structures into TiO2 were evaluated by assaying the photodegradation rate of Methylene Blue (MB). The photoactivities of the PDI-1/TiO2 and PDI-2/TiO2 catalysts were better than that of PDI-3/TiO2. This is because the large surface area of PDI-1 nanorods and PDI-2 nanobelts extended the 1D charge carrier channel, which facilitated electron transfer to the TiO2 surface and improved the photocatalytic activity of the composites. The PDI-1/TiO2 composite showed the highest photoactivity, and the activity remained at 86.4% after four reuse cycles. The extended π–π stacking of self-assembled PDI-1 and the strong interactions between self-assembled PDI-1 and TiO2 played significant roles in accelerating charge transfer and decreasing recombination of photogenerated electron–hole pairs. The steric hindrance of the phenoxy substituent at the bay position of PDI-2 prevented the PDI-2 nucleus from contacting TiO2 and weakened the interaction between PDI-2 and TiO2, which further resulted in the low photoactivity of PDI-2/TiO2. This work provides a practical way to improve the performances of traditional organic and inorganic composite photocatalysts.

Graphical abstract: Real roles of perylene diimides for improving photocatalytic activity

Supplementary files

Article information

Article type
Paper
Submitted
17 Apr 2020
Accepted
11 Jun 2020
First published
17 Jun 2020
This article is Open Access
Creative Commons BY license

RSC Adv., 2020,10, 23024-23037

Real roles of perylene diimides for improving photocatalytic activity

F. Zhang, W. Li, T. Jiang, X. Li, Y. Shao, Y. Ma and J. Wu, RSC Adv., 2020, 10, 23024 DOI: 10.1039/D0RA03421E

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