过电位
电催化剂
材料科学
法拉第效率
铜
催化作用
金属有机骨架
电化学
无机化学
密度泛函理论
电导率
化学工程
电流密度
物理化学
电极
冶金
化学
有机化学
计算化学
吸附
工程类
物理
量子力学
作者
Leily Majidi,Alireza Ahmadiparidari,Nannan Shan,Saurabh N. Misal,Khagesh Kumar,Zhehao Huang,Sina Rastegar,Zahra Hemmat,Xiaodong Zou,Peter Zapol,Jordi Cabana,Larry A. Curtiss,Amin Salehi‐Khojin
标识
DOI:10.1002/adma.202004393
摘要
Abstract Metal–organic frameworks (MOFs) are promising materials for electrocatalysis; however, lack of electrical conductivity in the majority of existing MOFs limits their effective utilization in the field. Herein, an excellent catalytic activity of a 2D copper (Cu)‐based conductive MOF, copper tetrahydroxyquinone (CuTHQ), is reported for aqueous CO 2 reduction reaction (CO 2 RR) at low overpotentials. It is revealed that CuTHQ nanoflakes (NFs) with an average lateral size of 140 nm exhibit a negligible overpotential of 16 mV for the activation of this reaction, a high current density of ≈173 mA cm −2 at −0.45 V versus RHE, an average Faradaic efficiency (F.E.) of ≈91% toward CO production, and a remarkable turnover frequency as high as ≈20.82 s −1 . In the low overpotential range, the obtained CO formation current density is more than 35 and 25 times higher compared to state‐of‐the‐art MOF and MOF‐derived catalysts, respectively. The operando Cu K‐edge X‐ray absorption near edge spectroscopy and density functional theory calculations reveal the existence of reduced Cu (Cu + ) during CO 2 RR which reversibly returns to Cu 2+ after the reaction. The outstanding CO 2 catalytic functionality of conductive MOFs (c‐MOFs) can open a way toward high‐energy‐density electrochemical systems.
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