Lertsathitphong Panjaphong, Limpijumnong Sarunputt, Somasundrum Mithran, O'Mullane Anthony P, Lertanantawong Benchaporn
Biosensors Laboratory, Department of Biomedical Engineering, Faculty of Engineering, Mahidol University, Nakhon Pathom 73170, Thailand.
Biosciences and System Biology Team, Biochemical Engineering and System Biology Research Group, National Center for Genetic Engineering and Biotechnology, National Science and Technology Development Agency at KMUTT, Bangkok 10150, Thailand.
ACS Omega. 2024 Oct 31;9(45):45641-45650. doi: 10.1021/acsomega.4c09165. eCollection 2024 Nov 12.
Liquid metal electrodes based on Ga are an emerging area of interest given their fluid properties which can have significant impact on electrochemical processes. Here we study metal electrodeposition, namely lead electrodeposition on the liquid metal electrodes, gallium (Ga) and galinstan (GaInSn), which was performed in two different Pb electrolytes (PbCl and Pb(NO)) to investigate any differences in the nature of the electrodeposit. Cyclic voltammetry and chronoamperometry were used to study the characteristics, kinetics, and nucleation and growth mechanisms of the electrodeposition process. Analysis of this electrochemical data, such as current density-time transients and diffusion coefficients under different potentials, revealed distinct behaviors for Pb deposition at each liquid metal and electrolyte, influencing the final morphology of the lead deposit. It was also found that the electrolyte concentration and deposition time were found to impact the morphology of the electrodeposited Pb. Scanning electron microscopy and energy dispersive X-ray spectroscopy revealed various types of Pb microstructures, including wire, branch-like, and flake-like formations, highlighting the differences in lead structural development when deposited on liquid gallium and Galinstan electrodes.
基于镓的液态金属电极因其流体特性而成为一个新兴的研究领域,这些特性可能对电化学过程产生重大影响。在这里,我们研究金属电沉积,即在液态金属电极镓(Ga)和镓铟锡(GaInSn)上进行铅电沉积,这是在两种不同的铅电解质(PbCl和Pb(NO))中进行的,以研究电沉积物性质的任何差异。循环伏安法和计时电流法用于研究电沉积过程的特性、动力学以及成核和生长机制。对这些电化学数据的分析,如不同电位下的电流密度-时间瞬变和扩散系数,揭示了每种液态金属和电解质上铅沉积的不同行为,影响了铅沉积物的最终形态。还发现电解质浓度和沉积时间会影响电沉积铅的形态。扫描电子显微镜和能量色散X射线光谱揭示了各种类型的铅微观结构,包括线状、分支状和片状结构,突出了沉积在液态镓和镓铟锡电极上时铅结构发展的差异。