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Intermolecular cascaded π-conjugation channels for electron delivery powering CO2 photoreduction.

Shengyao WangXiao HaiXing DingShangbin JinYonggang XiangPei WangBo JiangFumihiko IchiharaMitsutake OshikiriXianguang MengYunxiang LiWakana MatsudaJun MaShu SekiXuepeng WangHao HuangYoshiki WadaHao ChenJinhua Ye
Published in: Nature communications (2020)
Photoreduction of CO2 to fuels offers a promising strategy for managing the global carbon balance using renewable solar energy. But the decisive process of oriented photogenerated electron delivery presents a considerable challenge. Here, we report the construction of intermolecular cascaded π-conjugation channels for powering CO2 photoreduction by modifying both intramolecular and intermolecular conjugation of conjugated polymers (CPs). This coordination of dual conjugation is firstly proved by theoretical calculations and transient spectroscopies, showcasing alkynyl-removed CPs blocking the delocalization of electrons and in turn delivering the localized electrons through the intermolecular cascaded channels to active sites. Therefore, the optimized CPs (N-CP-D) exhibiting CO evolution activity of 2247 μmol g-1 h-1 and revealing a remarkable enhancement of 138-times compared to unmodified CPs (N-CP-A).
Keyphrases
  • energy transfer
  • quantum dots
  • molecular dynamics
  • density functional theory
  • sensitive detection
  • molecular dynamics simulations
  • cerebral ischemia
  • living cells