Room temperature photochemical synthesis of metal–organic frameworks for enhanced photocatalysis
Abstract
Abstract The function of metal–organic frameworks (MOFs) is fundamentally governed by their synthesis precision. Here, we report a light-driven strategy enabling ambient-temperature MOFs synthesis (15 °C, 4 hours) for cobalt-porphyrin frameworks (phoPPF-3), overcoming traditional thermal constraints. This approach achieves multidimensional control, manifested in two-dimensional hourglass morphologies and selective Co 2 ⁺-carboxylate coordination that preserves free-base porphyrin cores unattainable conventionally. Resulting phoPPF-3 exhibits enhanced thermal stability and higher photocatalytic activity in benzyl alcohol oxidation and H 2 evolution comparing to solvothermal analogues. The methodology demonstrates a certain generality through successful extension to other MOFs. This work marks the demonstration of using photons to initiate and guide MOFs synthesis and establishes a sustainable approach for atomically precise MOFs engineering via photochemical control.
Article Details
Authors (13)
Yong Wang
Jingzhuo Guan
Kush Kumar
Wanting He
Jesus Valdez
Ruiqi Yang
School of Chemical Engineering and Technology, State Key Laboratory of Synthetic Biology, Frontiers Science Center for Synthetic Biology (Ministry of Education)
Guoping Hu
Shengyun Huang
Audrey Moores
Santosh Kumar Meena
Yongfeng Zhou
Yannan Liu
Dongling Ma