Christiansen Magnus A H, Peña-Torres Alejandro, Jónsson Elvar Ö, Jónsson Hannes
Science Institute and Faculty of Physical Sciences, U. of Iceland, 107 Reykjavík, Iceland.
J Phys Chem Lett. 2024 May 30;15(21):5654-5658. doi: 10.1021/acs.jpclett.4c00899. Epub 2024 May 20.
Copper is a good CO electroreduction catalyst as products beyond CO form, but efficiency and selectivity is low. Experiments have shown that an admixture of other elements can help, and computational screening studies have pointed out various promising candidates based on the adsorption of a single CO molecule as a descriptor. Our calculations of CO adsorption on surfaces where a first row transition metal atom replaces a Cu atom show that multiple CO molecules, not just one, bind to the substitutional atom. For Fe, Co, and Ni atoms, a decrease in binding energy is found, but the reverse trend, namely, increasing bond strength, is found for V, Cr, and Mn and the first three CO molecules. Magnetic moment, charge, and position of the substitutional atom are also strongly affected by the CO adsorption in most cases. Magnetic moment is stepwise reduced to zero, and the outward displacement of the substitutional atom increased.
铜是一种良好的CO电还原催化剂,因为除了CO之外还会形成其他产物,但其效率和选择性较低。实验表明,其他元素的混合物可能会有所帮助,并且计算筛选研究基于单个CO分子的吸附作为描述符指出了各种有前景的候选元素。我们对第一排过渡金属原子取代Cu原子的表面上CO吸附的计算表明,与取代原子结合的不止一个CO分子,而是多个。对于Fe、Co和Ni原子,发现结合能降低,但对于V、Cr和Mn以及前三个CO分子,发现了相反的趋势,即键强度增加。在大多数情况下,取代原子的磁矩、电荷和位置也会受到CO吸附的强烈影响。磁矩逐步减小到零,取代原子向外位移增加。