Lee Si Young, Jung Hyejin, Kim Nak-Kyoon, Oh Hyung-Suk, Min Byoung Koun, Hwang Yun Jeong
Clean Energy Research Center , Korea Institute of Science and Technology , 5, Hwarang-ro 14-gil , Seongbuk-gu, Seoul , 02792 , Republic of Korea.
Division of Energy and Environmental Technology, KIST School , Korea University of Science and Technology , Hwarang-ro 14 gil 5 , Seongbuk-gu, Seoul , 02792 , Republic of Korea.
J Am Chem Soc. 2018 Jul 18;140(28):8681-8689. doi: 10.1021/jacs.8b02173. Epub 2018 Jul 2.
Oxygen-Cu (O-Cu) combination catalysts have recently achieved highly improved selectivity for ethylene production from the electrochemical CO reduction reaction (CORR). In this study, we developed anodized copper (AN-Cu) Cu(OH) catalysts by a simple electrochemical synthesis method and achieved ∼40% Faradaic efficiency for ethylene production, and high stability over 40 h. Notably, the initial reduction conditions applied to AN-Cu were critical to achieving selective and stable ethylene production activity from the CORR, as the initial reduction condition affects the structures and chemical states, crucial for highly selective and stable ethylene production over methane. A highly negative reduction potential produced a catalyst maintaining long-term stability for the selective production of ethylene over methane, and a small amount of Cu(OH) was still observed on the catalyst surface. Meanwhile, when a mild reduction condition was applied to the AN-Cu, the Cu(OH) crystal structure and mixed states disappeared on the catalyst, becoming more favorable to methane production after few hours. These results show the selectivity of ethylene to methane in O-Cu combination catalysts is influenced by the electrochemical reduction environment related to the mixed valences. This will provide new strategies to improve durability of O-Cu combination catalysts for C-C coupling products from electrochemical CO conversion.
氧-铜(O-Cu)复合催化剂最近在电化学CO还原反应(CORR)制乙烯方面实现了选择性的大幅提高。在本研究中,我们通过一种简单的电化学合成方法制备了阳极氧化铜(AN-Cu)Cu(OH)催化剂,实现了约40%的乙烯法拉第效率,并在40小时以上保持了高稳定性。值得注意的是,施加于AN-Cu的初始还原条件对于实现CORR选择性和稳定的乙烯生产活性至关重要,因为初始还原条件会影响结构和化学状态,而这些对于在甲烷存在下高选择性和稳定地生产乙烯至关重要。高度负的还原电位产生了一种对乙烯选择性生产相对于甲烷保持长期稳定性的催化剂,并且在催化剂表面仍观察到少量的Cu(OH)。同时,当对AN-Cu施加温和的还原条件时,催化剂上的Cu(OH)晶体结构和混合态消失,几小时后变得更有利于甲烷生成。这些结果表明,O-Cu复合催化剂中乙烯对甲烷的选择性受与混合价态相关的电化学还原环境影响。这将为提高O-Cu复合催化剂用于电化学CO转化制备C-C偶联产物的耐久性提供新策略。