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Rational design of isostructural 2D porphyrin-based covalent organic frameworks for tunable photocatalytic hydrogen evolution.


ABSTRACT: Covalent organic frameworks have recently gained increasing attention in photocatalytic hydrogen generation from water. However, their structure-property-activity relationship, which should be beneficial for the structural design, is still far-away explored. Herein, we report the designed synthesis of four isostructural porphyrinic two-dimensional covalent organic frameworks (MPor-DETH-COF, M?=?H2, Co, Ni, Zn) and their photocatalytic activity in hydrogen generation. Our results clearly show that all four covalent organic frameworks adopt AA stacking structures, with high crystallinity and large surface area. Interestingly, the incorporation of different transition metals into the porphyrin rings can rationally tune the photocatalytic hydrogen evolution rate of corresponding covalent organic frameworks, with the order of CoPor-DETH-COF?2Por-DETH-COF?

SUBMITTER: Chen R 

PROVIDER: S-EPMC7921403 | biostudies-literature | 2021 Mar

REPOSITORIES: biostudies-literature

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Rational design of isostructural 2D porphyrin-based covalent organic frameworks for tunable photocatalytic hydrogen evolution.

Chen Rufan R   Wang Yang Y   Ma Yuan Y   Mal Arindam A   Gao Xiao-Ya XY   Gao Lei L   Qiao Lijie L   Li Xu-Bing XB   Wu Li-Zhu LZ   Wang Cheng C  

Nature communications 20210301 1


Covalent organic frameworks have recently gained increasing attention in photocatalytic hydrogen generation from water. However, their structure-property-activity relationship, which should be beneficial for the structural design, is still far-away explored. Herein, we report the designed synthesis of four isostructural porphyrinic two-dimensional covalent organic frameworks (MPor-DETH-COF, M = H<sub>2</sub>, Co, Ni, Zn) and their photocatalytic activity in hydrogen generation. Our results clear  ...[more]

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