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Elucidating heterogeneous photocatalytic superiority of microporous porphyrin organic cage.


ABSTRACT: The investigation on the catalytic properties of porous organic cages is still in an initial stage. Herein, the reaction of cyclohexanediamine with 5,15-di[3',5'-diformyl(1,1'-biphenyl)]porphyrin affords a porphyrin tubular organic cage, PTC-1(2H). Transient absorption spectroscopy in solution reveals much prolonged triplet lifetime of PTC-1(2H) relative to monomer reference, illustrating the unique photophysical behavior of cagelike photosensitizer. The long triplet lifetime ensures high-efficiency singlet oxygen evolution according to homogeneous photo-bleach experiment, electron spin-resonance spectroscopy, and aerobic photo-oxidation of benzylamine. Furthermore, microporous supramolecular framework of PTC-1(2H) is able to promote the heterogeneous photo-oxidation of various primary amines with conversion efficiency above 99% under visible light irradiation. These results indicate the great application potentials of porous organic cages in heterogeneous phase.

SUBMITTER: Liu C 

PROVIDER: S-EPMC7044162 | biostudies-literature | 2020 Feb

REPOSITORIES: biostudies-literature

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Elucidating heterogeneous photocatalytic superiority of microporous porphyrin organic cage.

Liu Chao C   Liu Kunhui K   Wang Chiming C   Liu Heyuan H   Wang Hailong H   Su Hongmei H   Li Xiyou X   Chen Banglin B   Jiang Jianzhuang J  

Nature communications 20200226 1


The investigation on the catalytic properties of porous organic cages is still in an initial stage. Herein, the reaction of cyclohexanediamine with 5,15-di[3',5'-diformyl(1,1'-biphenyl)]porphyrin affords a porphyrin tubular organic cage, PTC-1(2H). Transient absorption spectroscopy in solution reveals much prolonged triplet lifetime of PTC-1(2H) relative to monomer reference, illustrating the unique photophysical behavior of cagelike photosensitizer. The long triplet lifetime ensures high-effici  ...[more]

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