Photoactive Heteropore Covalent Metal–Organic Frameworks for CO2 Photoreduction
Abstract
Abstract Metal–organic frameworks (MOFs) as a class of promising photocatalysts have been used for photocatalytic CO2 reduction reaction (CO2RR). Although many strategies have been developed for enhancing the photocatalytic activities, constructing photoactive heteropore MOFs for CO2RR remains largely unexplored. Herein, we report the synthesis of two two-dimensional (2D) copper cyclic trinuclear unit (Cu-CTU)-based heteropore covalent MOFs (CMOFs) and two homopore analogues. Interestingly, the heteropore CMOFs showed two times higher CO2 uptake than their homopore analogues. Moreover, the introduction of photosensitive units into heteropore CMOFs promoted light harvesting as well as charge separation, achieving a CO generation rate of 3548 μmol g–1 h–1 with 94.7% selectivity and an apparent quantum yield (AQY) of 6.78% at 420 nm in the presence of [Ru(bpy)3]Cl2. Notably, the photoactive heteropore CMOFs delivered high photocatalytic activity under diluted CO2 and natural sunlight conditions. Our work demonstrated that incorporation of heteropore structures and photosensitive units into MOFs can synergistically enhance photocatalytic CO2RR performance.
Article Details
Journal Info
Journal of the American Chemical Society
American Chemical Society
Authors (11)
Xu Chen
Jinan University , , , ,
Fangjie Xu
Jinan University , , , ,
Yu-Yang Li
University of Science and Technology of China , , , ,
Shu-Ya Guo
Jinan University , , , ,
Ji Zheng
Jinan University , , , ,
Li-Yang Chen
Jinan University , , , ,
Zhi-Hong Lin
Jinan University , , , ,
Kun Wu
Bingzhe Wang
Jinan University , , , ,
Guo-Hong Ning
Jinan University , , , ,
Dan Li