Xie Jing, Zeng Yi, Sun Ziqi, Liu Jiawang, Zhang Chen, Wang Yue, Sun Wenyu, Wang Jiahui, Cao Duanyun, Guo Qing, Guo Jing
College of Chemistry, Key Laboratory of Theoretical and Computational Photochemistry, Beijing Normal University, Beijing 100875, China.
Shenzhen Key Laboratory of Energy Chemistry & Department of Chemistry, Southern University of Science and Technology, Shenzhen, Guangdong 518055, China.
JACS Au. 2025 Jun 23;5(7):3366-3373. doi: 10.1021/jacsau.5c00462. eCollection 2025 Jul 28.
Alkali metals play an important role in formic acid (FA) decomposition. However, the atomic-scale mechanism of how alkali metals modify FA dehydrogenation and interact with formate ions remains unclear. Here, we observed the promoting effect of potassium (K) in FA decomposition on Cu(111), using scanning tunneling microscopy (STM), noncontact atomic force microscopy (nc-AFM), and temperature-programmed desorption (TPD). The presence of K can significantly promote the deprotonation of FA into protons and formate ions. The formate ions can directly coordinate with K with a maximum HCOO-K ratio of 5:1. The HCOO-K mixtures could further assemble into larger clusters that can remain stable at room temperature in which the K ions are bridged by formate ions. The formation of HCOO-K mixtures could enhance the adsorption of formate ions on copper, thus facilitating the dissociation of formate ions into H and CO at elevated temperatures. Furthermore, we demonstrated that K plays a dominant role in promoting FA dehydrogenation compared to water due to superior ability of K to stabilize the reaction intermediate, formate. This work provides atomic-scale insights into K-mediated formate stabilization on metal surfaces, offering new insights into catalytic processes involving formate species.
碱金属在甲酸(FA)分解过程中起着重要作用。然而,碱金属如何改变FA脱氢过程以及与甲酸根离子相互作用的原子尺度机制仍不清楚。在此,我们利用扫描隧道显微镜(STM)、非接触原子力显微镜(nc-AFM)和程序升温脱附(TPD),观察了钾(K)在FA于Cu(111)表面分解过程中的促进作用。K的存在能显著促进FA去质子化生成质子和甲酸根离子。甲酸根离子能直接与K配位,最大HCOO-K比例为5:1。HCOO-K混合物可进一步组装成更大的团簇,在室温下保持稳定状态,其中K离子由甲酸根离子桥连。HCOO-K混合物的形成能增强甲酸根离子在铜表面的吸附,从而在升高温度时促进甲酸根离子分解为H和CO。此外,我们证明,与水相比,K在促进FA脱氢过程中起主导作用,这是因为K稳定反应中间体甲酸根的能力更强。这项工作提供了关于K介导金属表面甲酸根稳定化的原子尺度见解,为涉及甲酸根物种的催化过程提供了新的认识。