首页> 外文期刊>Electrochimica Acta >Electrochemical fabrication of nanoporous gold-supported manganese oxide nanowires based on electrodeposition from eutectic urea/choline chloride ionic liquid
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Electrochemical fabrication of nanoporous gold-supported manganese oxide nanowires based on electrodeposition from eutectic urea/choline chloride ionic liquid

机译:基于共晶脲/氯化胆碱离子液体电沉积的纳米多孔金负载氧化锰纳米线的电化学制备

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摘要

In this study an electrochemical approach is proposed for the fabrication of nanoporous gold (NPG)-supported manganese oxide nanowires. This method consists in: (i) electrodepositing an Au-Mn alloy, (ii) selectively corroding Mn under electrochemical control, forming simultaneously the NPG support and the functional Mn-oxide decorating the nanopores. The electrodeposition process is carried out from a bath based on eutectic urea/choline chloride ionic liquid. The electrochemical dealloying/oxidation step is performed in an aqueous solution. The oxidation process, performed by cyclic voltammetry (CV) in aqueous solution, has been monitored in situ by visible reflectivity measurements. The crystal structure and the morphology of the electrodeposited Au-Mn alloy have been examined by XRD and SEM, respectively. The 3D morphology of the nanostructure has been characterised by FIB/FEG-SEM. The specific capacity of NPG-supported nanostructured Mn-oxide has been measured by CV and found to be notably better than that of unsupported electrodeposited Mn-oxide nanowires.
机译:在这项研究中,提出了一种电化学方法来制备纳米多孔金(NPG)负载的氧化锰纳米线。该方法包括:(i)电沉积Au-Mn合金,(ii)在电化学控制下选择性腐蚀Mn,同时形成NPG载体和装饰性纳米孔的功能性Mn-氧化物。电沉积过程是从基于共晶脲/氯化胆碱离子液体的浴中进行的。电化学脱合金/氧化步骤在水溶液中进行。通过循环伏安法(CV)在水溶液中进行的氧化过程已通过可见反射率测量进行了现场监测。用XRD和SEM分别检查了电沉积Au-Mn合金的晶体结构和形貌。纳米结构的3D形态已通过FIB / FEG-SEM进行了表征。已通过CV测量了NPG负载的纳米结构Mn-氧化物的比容量,发现其比未负载的电沉积Mn-氧化物纳米线的比容量明显更好。

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