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Consecutive Charging of a Perylene Bisimide Dye by Multistep Low-Energy Solar-Light-Induced Electron Transfer Towards H2 Evolution.

Yucheng XuJiaxin ZhengJoachim O LindnerXinbo WenNianqiang JiangZhicheng HuLinlin LiuFei HuangFrank WürthnerZengqi Xie
Published in: Angewandte Chemie (International ed. in English) (2020)
A photocatalytic system containing a perylene bisimide (PBI) dye as a photosensitizer anchored to titanium dioxide (TiO2 ) nanoparticles through carboxyl groups was constructed. Under solar-light irradiation in the presence of sacrificial triethanolamine (TEOA) in neutral and basic conditions (pH 8.5), a reaction cascade is initiated in which the PBI molecule first absorbs green light, giving the formation of a stable radical anion (PBI.- ), which in a second step absorbs near-infrared light, forming a stable PBI dianion (PBI2- ). Finally, the dianion absorbs red light and injects an electron into the TiO2 nanoparticle that is coated with platinum co-catalyst for hydrogen evolution. The hydrogen evolution rates (HERs) are as high as 1216 and 1022 μmol h-1  g-1 with simulated sunlight irradiation in neutral and basic conditions, respectively.
Keyphrases
  • visible light
  • perovskite solar cells
  • electron transfer
  • highly efficient
  • ionic liquid
  • photodynamic therapy
  • wastewater treatment
  • radiation therapy
  • radiation induced