题名 | Molecularly Woven Cationic Covalent Organic Frameworks for Highly Selective Electrocatalytic Conversion of CO2 to CO |
作者 | |
通讯作者 | Tong, Qing-Xiao; Jian, Jing-Xin |
发表日期 | 2024-09-01
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DOI | |
发表期刊 | |
EISSN | 2198-3844
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摘要 | Coupling carbon capture with electrocatalytic carbon dioxide reduction (CO2R) to yield high-value chemicals presents an appealing avenue for combating climate change, yet achieving highly selective electrocatalysts remains a significant challenge. Herein, two molecularly woven covalent organic frameworks (COFs) are designed, namely CuCOF and CuCOF+, with copper(I)-bisphenanthroline complexes as building blocks. The metal-organic helical structure unit made the CuCOF and CuCOF+ present woven patterns, and their ordered pore structures and cationic properties enhanced their CO2 adsorption and good conductivity, which is confirmed by gas adsorption and electrochemical analysis. In the electrocatalytic CO2R measurements, CuCOF+ decorated with extra ethyl groups exhibit a main CO product with selectivity of 57.81%, outperforming the CuCOF with 42.92% CO at the same applied potential of 0.8 V-RHE. After loading Pd nanoparticles, CuCOF-Pd and CuCOF+-Pd performed increased CO selectivity up to 84.97% and 95.45%, respectively. Combining the DFT theoretical calculations and experimental measurements, it is assumed that the molecularly woven cationic COF provides a catalytic microenvironment for CO2R and ensures efficient charge transfer from the electrode to the catalytic center, thereby achieving high electrocatalytic activity and selectivity. The present work significantly advances the practice of cationic COFs in real-time CO2 capture and highly selective conversion to value-added chemicals. |
关键词 | |
相关链接 | [来源记录] |
收录类别 | |
语种 | 英语
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学校署名 | 其他
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资助项目 | National Natural Science Foundation of China[52273187]
; null[2023A1515240077]
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WOS研究方向 | Chemistry
; Science & Technology - Other Topics
; Materials Science
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WOS类目 | Chemistry, Multidisciplinary
; Nanoscience & Nanotechnology
; Materials Science, Multidisciplinary
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WOS记录号 | WOS:001309548500001
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出版者 | |
来源库 | Web of Science
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引用统计 | |
成果类型 | 期刊论文 |
条目标识符 | http://sustech.caswiz.com/handle/2SGJ60CL/834252 |
专题 | 理学院_化学系 |
作者单位 | 1.Shantou Univ Guangdong, Dept Chem Key Lab Preparat & Applicat Ordered Stru, Shantou 515063, Guangdong, Peoples R China 2.Shantou Univ, Guangdong Prov Key Lab Marine Disaster Predict & P, Shantou 515063, Guangdong, Peoples R China 3.Southern Univ Sci & Technol, Dept Chem, Shenzhen 518055, Peoples R China 4.Ganjian Innovat Acad Sci, Fundamental Sci Ctr Rare Earths, Ganzhou 431000, Peoples R China 5.Guangdong Techn Israel Inst Technol, Dept Chem Engn, Shantou 515063, Peoples R China |
推荐引用方式 GB/T 7714 |
Dagnaw, Fentahun Wondu,Harrath, Karim,Zheng, Tao,et al. Molecularly Woven Cationic Covalent Organic Frameworks for Highly Selective Electrocatalytic Conversion of CO2 to CO[J]. ADVANCED SCIENCE,2024.
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APA |
Dagnaw, Fentahun Wondu.,Harrath, Karim.,Zheng, Tao.,Wu, Xu-Dong.,Liu, Yu-Ze.,...&Jian, Jing-Xin.(2024).Molecularly Woven Cationic Covalent Organic Frameworks for Highly Selective Electrocatalytic Conversion of CO2 to CO.ADVANCED SCIENCE.
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MLA |
Dagnaw, Fentahun Wondu,et al."Molecularly Woven Cationic Covalent Organic Frameworks for Highly Selective Electrocatalytic Conversion of CO2 to CO".ADVANCED SCIENCE (2024).
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