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Interfacial electrochemistry and electrodeposition from some ionic liquids: In situ scanning tunneling microscopy, plasma electrochemistry, selenium and macroporous materials

机译:某些离子液体的界面电化学和电沉积:原位扫描隧道显微镜,等离子体电化学,硒和大孔材料

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In this paper we report on recent results from our group, namely on the interface ionic liquid/electrode, plasma electrochemistry and electrodeposition of selenium and of macroporous structures. Ionic liquids show an interesting and liquid dependent surface chemistry: in some liquids the long range "herringbone" superstructure of Au(111) is visible, in others it is not. Glow discharge plasmas can be employed as a contact free electrode to make nanoparticles in solutions, e.g. nanoparticles of germanium. Selenium can be electrodeposited from ionic liquids under environmental conditions in an open cell and both the red and the grey phases of selenium are feasible. With the help of self organized opal structures of polystyrene spheres macroporous materials of Ag, Al and conducting polymers can be made. The prospects and limits of ionic liquids in surface electrochemistry and electrodeposition are shortly discussed.
机译:在本文中,我们报告了我们小组的最新研究成果,即在界面离子液体/电极,等离子体电化学以及硒和大孔结构的电沉积方面。离子液体显示出有趣的且与液体有关的表面化学性质:在某些液体中,Au(111)的远距离“人字形”超结构是可见的,而在另一些情况下则不是。辉光放电等离子体可以用作无接触电极以在溶液中制备纳米颗粒,例如锗的纳米粒子。硒可以在环境条件下在开孔中从离子液体中电沉积,硒的红色和灰色相都是可行的。借助于聚苯乙烯球的自组织蛋白石结构,可以制备Ag,Al和导电聚合物的大孔材料。简短讨论了离子液体在表面电化学和电沉积中的前景和局限性。

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