Lu Pengyi, Lv Jia, Chen Yu, Ma Yangbo, Wang Yunhao, Lyu Weichao, Yu Jinli, Zhou Jingwen, Yin Jinwen, Xiong Yuecheng, Wang Guozhi, Ling Chongyi, Xi Shibo, Zhang Daliang, Fan Zhanxi
Department of Chemistry, City University of Hong Kong, Hong Kong 999077, China.
Hong Kong Branch of National Precious Metals Material Engineering Research Centre (NPMM), City University of Hong Kong, Hong Kong 999077, China.
Nano Lett. 2024 Feb 7;24(5):1553-1562. doi: 10.1021/acs.nanolett.3c04092. Epub 2024 Jan 24.
Although metal-organic frameworks (MOFs) have attracted more attention for the electrocatalytic CO reduction reaction (CORR), obtaining multicarbon products with a high Faradaic efficiency (FE) remains challenging, especially under neutral conditions. Here, we report the controlled synthesis of stable Cu(I) 5-mercapto-1-methyltetrazole framework (Cu-MMT) nanostructures with different facets by rationally modulating the reaction solvents. Significantly, Cu-MMT nanostructures with (001) facets are acquired using isopropanol as a solvent, which favor multicarbon production with an FE of 73.75% and a multicarbon:single-carbon ratio of 3.93 for CORR in a neutral electrolyte. In sharp contrast, Cu-MMT nanostructures with (100) facets are obtained utilizing water, promoting single-carbon generation with an FE of 63.98% and a multicarbon: single-carbon ratio of only 0.18. Furthermore, this method can be extended to other Cu-MMT nanostructures with different facets in tuning the CO reduction selectivity. This work opens up new opportunities for the highly selective and efficient CO electroreduction to multicarbon products on MOFs via facet engineering.
尽管金属有机框架材料(MOFs)在电催化CO还原反应(CORR)中已引起更多关注,但要获得具有高法拉第效率(FE)的多碳产物仍然具有挑战性,尤其是在中性条件下。在此,我们报告了通过合理调节反应溶剂来可控合成具有不同晶面的稳定的Cu(I)5-巯基-1-甲基四唑框架(Cu-MMT)纳米结构。值得注意的是,使用异丙醇作为溶剂可获得具有(001)晶面的Cu-MMT纳米结构,在中性电解质中,该结构有利于多碳产物的生成,CORR的FE为73.75%,多碳与单碳的比例为3.93。形成鲜明对比的是,利用水可获得具有(100)晶面的Cu-MMT纳米结构,其促进单碳生成,FE为63.98%,多碳与单碳的比例仅为0.18。此外,该方法可扩展到其他具有不同晶面的Cu-MMT纳米结构,以调节CO还原选择性。这项工作为通过晶面工程在MOFs上实现高选择性和高效的CO电还原为多碳产物开辟了新机遇。