Pengcheng Zhao, Hong‐Guang Jin, Huapeng Sun, Jie Deng, Zi‐Sheng Chao
Molecular organization of electron donor and acceptor chromophores both as ligands within a metal–organic framework (MOF) with improved charge transfer efficiency is of paramount interest in artificial photosynthesis yet remains a major challenge. In this work, an electron donor–acceptor (D–A) pair consisting of 5,15-di( p -benzoato)porphyrin (H 2 DPBP, donor) and naphthalene diimide (NDI, acceptor) with similar geometry and connectivity was integrated into a highly stable and porous MOF (UiO-66) via a facile one-pot synthetic approach. Benefiting from the efficient photoinduced electron transfer (PET) from the donor H 2 DPBP ligand to the acceptor NDI ligand and the energy transfer gifted by the photosensitizer H 2 DPBP ligand upon light irradiation, which contribute to the abundant generation of reactive oxygen species of superoxide radical (O 2 •– ) and singlet oxygen ( 1 O 2 ), respectively, the resulting heteroligand D–A MOF UiO-66-H 2 DPBP-NDI exhibits excellent photocatalytic activities toward aerobic oxidation reactions involving the hydroxylation of arylboronic acids and homocoupling of amines under mild conditions. This work presents a new avenue to construct efficient D–A systems by cointegration of electron donor and acceptor both as ligands into one MOF for advanced artificial photosynthesis.