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铜纳米粒子上 CO 电还原的直晶界活性相关性。

A Direct Grain-Boundary-Activity Correlation for CO Electroreduction on Cu Nanoparticles.

机构信息

Department of Chemistry, Stanford University , Stanford, California 94305, United States.

Department of Physics and Tsinghua-Foxconn Nanotechnology Research Center, Tsinghua University , Beijing 100084, China.

出版信息

ACS Cent Sci. 2016 Mar 23;2(3):169-74. doi: 10.1021/acscentsci.6b00022. Epub 2016 Mar 7.

Abstract

Copper catalyzes the electrochemical reduction of CO to valuable C2+ products including ethanol, acetate, propanol, and ethylene. These reactions could be very useful for converting renewable energy into fuels and chemicals, but conventional Cu electrodes are energetically inefficient and have poor selectivity for CO vs H2O reduction. Efforts to design improved catalysts have been impeded by the lack of experimentally validated, quantitative structure-activity relationships. Here we show that CO reduction activity is directly correlated to the density of grain boundaries (GBs) in Cu nanoparticles (NPs). We prepared electrodes of Cu NPs on carbon nanotubes (Cu/CNT) with different average GB densities quantified by transmission electron microscopy. At potentials ranging from -0.3 V to -0.5 V vs the reversible hydrogen electrode, the specific activity for CO reduction to ethanol and acetate was linearly proportional to the fraction of NP surfaces comprised of GB surface terminations. Our results provide a design principle for CO reduction to ethanol and acetate on Cu. GB-rich Cu/CNT electrodes are the first NP catalysts with significant CO reduction activity at moderate overpotential, reaching a mass activity of up to ∼1.5 A per gram of Cu and a Faradaic efficiency >70% at -0.3 V.

摘要

铜催化电化学还原 CO 生成有价值的 C2+产物,包括乙醇、乙酸、丙醇和乙烯。这些反应对于将可再生能源转化为燃料和化学品非常有用,但传统的 Cu 电极能量效率低,对 CO 与 H2O 还原的选择性差。设计改进催化剂的努力受到缺乏经过实验验证的定量结构-活性关系的阻碍。在这里,我们表明 CO 还原活性与 Cu 纳米颗粒 (NPs) 中晶界 (GB) 的密度直接相关。我们通过透射电子显微镜定量制备了具有不同平均 GB 密度的 Cu NPs 负载在碳纳米管 (Cu/CNT) 上的电极。在相对于可逆氢电极的电位范围从 -0.3 V 到 -0.5 V 时,CO 还原为乙醇和乙酸的比活性与由 GB 表面终止组成的 NP 表面分数呈线性相关。我们的结果为在 Cu 上进行 CO 还原为乙醇和乙酸提供了设计原则。富含 GB 的 Cu/CNT 电极是首例在适度过电势下具有显著 CO 还原活性的 NP 催化剂,在 -0.3 V 时达到高达约 1.5 A/g 的质量活性和超过 70%的法拉第效率。

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