卟啉
硝酸盐
纳米结构
光化学
光催化
尿素
材料科学
金属有机骨架
无机化学
还原(数学)
金属
催化作用
化学
吸附
纳米技术
有机化学
冶金
几何学
数学
作者
Tong Bao,Chencheng Tang,You Wu,Yin Bi,Chaoqi Zhang,Yamin Xi,Yingying Zou,Chao Liu,Chengzhong Yu
标识
DOI:10.1002/anie.202512615
摘要
The photocatalytic co-reduction of NO3 - and CO2 (NitRR&CRR) offers a sustainable approach for urea synthesis and environment remediation. However, there is a lack of high-performance photocatalysts. Herein, we report a nanoflower-like bimetallic porphyrin metal-organic framework superstructure (Cu-TCPP(Co)-NF, TCPP = tetrakis(4-carboxyphenyl)porphyrin) as an efficient NitRR&CRR photocatalyst for urea production. Systematical investigations have revealed that the Cu and Co centers serve as the active sites for driving NitRR and CRR, respectively. The high pore volumes of nanoflower architecture can improve the light adsorption, promote the reactant enrichment, and intermediate generation. Consequently, the C-N coupling process over Cu-TCPP(Co)-NF is facilitated with reduced energy barriers and inhibited side reactions, resulting in an unprecedent urea yield of 2459.8 µg h-1 gcat -1 in the absence of sacrificial agents. This study provides new insights into the design of advanced photocatalysts for urea synthesis.
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