Ramos-Castillo Carlos M, Torres-Pacheco Luis, Álvarez-Contreras Lorena, Arjona Noé, Guerra-Balcázar Minerva
Centro de Investigación y Desarrollo Tecnológico en Electroquímica S. C., Sanfandila, Pedro Escobedo, Querétaro C. P. 76703, Mexico.
Facultad de Ingeniería, División de Investigación y Posgrado, Universidad Autónoma de Querétaro, Querétaro C. P. 76010, Mexico.
Molecules. 2025 Feb 6;30(3):744. doi: 10.3390/molecules30030744.
The modification of catalytic activity through the use of metallic promoters is a key strategy for optimizing performance, as electronic factors play a crucial role in regulating catalytic behavior. This study explores the electronic factors behind the adsorption of glycerol (Gly) on bimetallic nickel-based compounds (Ni3X) using density functional theory (DFT) calculations; incorporating Mn, Fe, Co, Cu, and Zn as promoters effectively tunes the d-band center of these systems, directly influencing their magnetic, adsorption, and catalytic properties. A good correlation between the calculated glycerol adsorption energy and the d-band filling of the studied bimetallic surfaces was identified. Interestingly, this correlation can be rationalized using the celebrated Newns-Anderson model based on the calculated d-band fillings and centers of the systems under study. Additionally, the adsorption energies and relative stability of other electro-oxidation intermediates toward dihydroxyacetone (DHA) were calculated. Notably, the Ni3Co and Ni3Cu systems exhibit an optimal balance between glycerol adsorption and DHA desorption, making them promising candidates for glycerol electro-oxidation. These theoretical insights address fundamental aspects of developing glycerol valorization processes and advancing alcohol electro-oxidation technologies in fuel cells with noble-metal-free catalysts.
通过使用金属促进剂来改变催化活性是优化性能的关键策略,因为电子因素在调节催化行为中起着至关重要的作用。本研究利用密度泛函理论(DFT)计算探索了甘油(Gly)在双金属镍基化合物(Ni3X)上吸附背后的电子因素;引入锰、铁、钴、铜和锌作为促进剂可有效调节这些体系的d带中心,直接影响其磁性、吸附和催化性能。研究发现计算得到的甘油吸附能与所研究双金属表面的d带填充之间存在良好的相关性。有趣的是,基于所研究体系的计算d带填充和中心,使用著名的纽恩斯-安德森模型可以解释这种相关性。此外,还计算了其他电氧化中间体对二羟基丙酮(DHA)的吸附能和相对稳定性。值得注意的是,Ni3Co和Ni3Cu体系在甘油吸附和DHA脱附之间表现出最佳平衡,使其成为甘油电氧化的有前途的候选材料。这些理论见解解决了开发甘油增值工艺以及推进无贵金属催化剂燃料电池中醇类电氧化技术的基本问题。