Liu Yang, Li Hao, Liu Xinghui, Wang Yixuan, Wang Lingling, Yang Taehun, Jadhav Amol R, Zhang Jinqiang, Wang Yang, Wu Mingbo, Lee Jin Yong, Kim Min Gyu, Lee Hyoyoung
Creative Research Institute, Sungkyunkwan University, Suwon, 16419, Republic of Korea.
Department of Chemistry, Sungkyunkwan University, Suwon, 16419, Republic of Korea.
ACS Nano. 2024 Jan 9;18(1):874-884. doi: 10.1021/acsnano.3c09504. Epub 2023 Dec 19.
Controllable metal-support interaction (MSI) modulations have long been studied for improving the performance of catalysts supported on metal oxides. However, the corresponding in-depth study for metal-metal (M-M) composited configurations is rarely achieved due to the lack of reliable models and manipulation mechanisms of MSI modifications. We modeled ruthenium on copper support (Ru-Cu) metal catalysts with negligible interfacial contact potential (e0.06 V) and investigated MSI-dependent hydrogen evolution reaction (HER) catalysis kinetics induced by an electronic hydroxyl (HO-) modifier. Comprehensive simulations and characterizations confirmed that adjusting the HO- coverage can readily realize the tailorable improvement of MSI, facilitating charge migration at the Ru-Cu interface and optimizing the overall HER pathway on active Ru. As a result, a 5/10 monolayer (ML) HO-modified catalyst (5/10 ML) exhibits superior HER activity and durability owing to the relatively stronger MSI. This catalyst also ensured sustainable and efficient hydrogen generation in a urea electrolyzer with significant energy savings. Our work provides a valuable reference for optimizing the MSI-activity relationship in M-M catalysts that target more than just HER.
长期以来,人们一直在研究可控的金属-载体相互作用(MSI)调制,以提高负载在金属氧化物上的催化剂的性能。然而,由于缺乏可靠的MSI修饰模型和调控机制,很少能对金属-金属(M-M)复合结构进行相应的深入研究。我们对具有可忽略界面接触电势(e0.06 V)的铜负载钌(Ru-Cu)金属催化剂进行了建模,并研究了由电子羟基(HO-)修饰剂诱导的依赖于MSI的析氢反应(HER)催化动力学。综合模拟和表征证实,调节HO-覆盖率可以很容易地实现MSI的可定制改善,促进Ru-Cu界面处的电荷迁移,并优化活性Ru上的整体HER途径。结果,由于相对较强的MSI,5/10单层(ML)HO修饰的催化剂(5/10 ML)表现出优异的HER活性和耐久性。该催化剂还确保了在尿素电解槽中可持续高效地制氢,同时显著节省了能源。我们的工作为优化M-M催化剂中MSI与活性之间的关系提供了有价值的参考,这些催化剂的目标不仅仅是HER。