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具有钴(II)-酞菁位点的二维共价有机框架用于高效电催化二氧化碳还原

Two-Dimensional Covalent Organic Frameworks with Cobalt(II)-Phthalocyanine Sites for Efficient Electrocatalytic Carbon Dioxide Reduction.

作者信息

Han Bin, Ding Xu, Yu Baoqiu, Wu Hui, Zhou Wei, Liu Wenping, Wei Chuangyu, Chen Baotong, Qi Dongdong, Wang Hailong, Wang Kang, Chen Yanli, Chen Banglin, Jiang Jianzhuang

机构信息

Beijing Advanced Innovation Center for Materials Genome Engineering, Beijing Key Laboratory for Science and Application of Functional Molecular and Crystalline Materials, Department of Chemistry and Chemical Engineering, School of Chemistry and Biological Engineering, University of Science and Technology Beijing, Beijing 100083, China.

Center for Neutron Research, National Institute of Standards and Technology, Gaithersburg, Maryland 20899-6102, United States.

出版信息

J Am Chem Soc. 2021 May 12;143(18):7104-7113. doi: 10.1021/jacs.1c02145. Epub 2021 May 3.

Abstract

The rapid development in synthesis methodology and applications for covalent organic frameworks (COFs) has been witnessed in recent years. However, the synthesis of highly stable functional COFs still remains a great challenge. Herein two-dimensional polyimide-linked phthalocyanine COFs (denoted as CoPc-PI-COF-1 and CoPc-PI-COF-2) have been devised and prepared through the solvothermal reaction of the tetraanhydrides of 2,3,9,10,16,17,23,24-octacarboxyphthalocyaninato cobalt(II) with 1,4-phenylenediamine and 4,4'-biphenyldiamine, respectively. The resultant CoPc-PI-COFs with a four-connected sql net exhibit AA stacking configurations according to powder X-ray diffraction studies, showing permanent porosity, thermal stability above 300 °C, and excellent resistance to a 12 M HCl aqueous solution for 20 days. Current-voltage curves reveal the conductivity of CoPc-PI-COF-1 and CoPc-PI-COF-2 with the value of 3.7 × 10 and 1.6 × 10 S m, respectively. Due to the same Co(II) electroactive sites together with similar permanent porosity and CO adsorption capacity for CoPc-PI-COFs, the cathodes made up of COFs and carbon black display a similar CO-to-CO Faradaic efficiency of 87-97% at applied potentials between -0.60 and -0.90 V (vs RHE) in 0.5 M KHCO solution. However, in comparison with the CoPc-PI-COF-2&carbon black electrode, the CoPc-PI-COF-1 counterpart provides a larger current density () of -21.2 mA cm at -0.90 V associated with its higher conductivity. This cathode also has a high turnover number and turnover frequency, amounting to 277 000 and 2.2 s at -0.70 V during 40 h of measurement. The present result clearly discloses the great potential of 2D porous crystalline solids in electrocatalysis.

摘要

近年来,共价有机框架(COF)的合成方法和应用取得了迅速发展。然而,合成高度稳定的功能性COF仍然是一个巨大的挑战。在此,通过2,3,9,10,16,17,23,24-八羧基酞菁钴(II)四酸酐分别与1,4-苯二胺和4,4'-联苯二胺的溶剂热反应,设计并制备了二维聚酰亚胺连接的酞菁COF(分别表示为CoPc-PI-COF-1和CoPc-PI-COF-2)。粉末X射线衍射研究表明,所得具有四连接sql网络的CoPc-PI-COF呈现AA堆积构型,显示出永久孔隙率、300℃以上的热稳定性以及对12M盐酸水溶液20天的优异耐受性。电流-电压曲线显示CoPc-PI-COF-1和CoPc-PI-COF-2的电导率分别为3.7×10和1.6×10 S m。由于CoPc-PI-COF具有相同的Co(II)电活性位点以及相似的永久孔隙率和CO吸附能力,由COF和炭黑组成的阴极在0.5M KHCO溶液中,在-0.60至-0.90V(相对于RHE)的施加电位下,显示出相似的CO到CO法拉第效率,为87-97%。然而,与CoPc-PI-COF-2&炭黑电极相比,CoPc-PI-COF-1对应物在-0.90V时提供了更大的电流密度()-21.2 mA cm,这与其更高的电导率相关。该阴极还具有高周转数和周转频率,在40小时的测量过程中,在-0.70V时分别达到277 000和2.2 s。目前的结果清楚地揭示了二维多孔晶体固体在电催化中的巨大潜力。

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