Department of Physics, Hope College, Holland, MI 49423, USA.
Nanoscale Res Lett. 2013 Dec 17;8(1):528. doi: 10.1186/1556-276X-8-528.
: Porous metals are of interest for their high surface area and potential for enhanced catalytic behavior. Electrodeposited NiCu thin films with a range of compositions were electrochemically dealloyed to selectively remove the Cu component. The film structure, composition, and reactivity of these samples were characterized both before and after the dealloying step using scanning electron microscopy, energy-dispersive spectroscopy, and electrochemical measurements. The catalytic behavior of the dealloyed porous Ni samples towards the hydrogen evolution reaction was measured and compared to that of the as-deposited samples. The dealloyed samples were generally more reactive than their as-deposited counterparts at low overpotentials, making the dealloying procedure a promising area of exploration for improved hydrogen evolution catalysts.
多孔金属因其高表面积和增强催化性能而受到关注。采用电化学方法将具有不同成分的电沉积 NiCu 薄膜进行脱合金处理,以选择性地去除 Cu 成分。使用扫描电子显微镜、能量色散光谱和电化学测量对这些样品在脱合金前后的结构、组成和反应性进行了表征。测量了脱合金多孔 Ni 样品对析氢反应的催化行为,并与沉积态样品进行了比较。在低过电势下,脱合金样品通常比沉积态样品更具反应性,这使得脱合金处理成为探索改进析氢催化剂的一个有前途的领域。