SIGMA-2: Finishing Manufacturing Science, Los Alamos National Laboratories, SM-30 Bikini Atoll Road, Los Alamos, NM, 87545, USA.
MPA-CINT: Center for Integrated Nanotechnologies, Los Alamos National Laboratories, Los Alamos, NM, 87544, USA.
Sci Rep. 2023 Jan 21;13(1):1202. doi: 10.1038/s41598-023-28042-z.
Due to its unique physical and chemical properties, bismuth is an attractive candidate for a wide range of applications such as battery anodes, radiation shielding, and semiconductors, to name a few. This work presents the electrodeposition of mechanically stable and homogenous bismuth films at micron-scale thicknesses. A simple one-step electrodeposition process using either a pulse/reverse or direct current source yielded thick, homogenous, and mechanically stable bismuth films. Morphology, electrochemical behavior, adhesion, and mechanical stability of bismuth coatings plated with varying parameters were characterized via optical profilometry, cyclic voltammetry, electron microscopy, and tribology. Scratch testing on thick electroplated coatings (> 100 µm) revealed similar wear resistance properties between the pulse/reverse plated and direct current electroplated films. This study presents a versatile bismuth electroplating process with the possibility to replace lead in radiation shields with an inexpensive, non-toxic metal, or to make industrially relevant electrocatalytic devices.
由于铋具有独特的物理和化学性质,因此它是电池阳极、辐射屏蔽和半导体等多种应用的有吸引力的候选材料。本工作提出了在微米级厚度下机械稳定且均匀的铋薄膜的电沉积。使用脉冲/反向或直流电源的简单一步电沉积工艺可得到厚的、均匀的和机械稳定的铋薄膜。通过光学轮廓术、循环伏安法、电子显微镜和摩擦学来表征具有不同参数的铋涂层的形态、电化学行为、附着力和机械稳定性。对厚电镀层 (>100 µm) 的划痕测试表明,脉冲/反向电镀和直流电镀薄膜具有相似的耐磨性。本研究提出了一种多功能铋电镀工艺,有可能用一种廉价、无毒的金属替代辐射屏蔽中的铅,或者制造工业相关的电催化装置。