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首页> 外文期刊>Zeitschrift fur Physikalische Chemie: International Journal of Research in Physical Chemistry and Chemical Physics >Electrochemical Deposition of Nanostructured Metals and Alloys from Ionic Liquids
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Electrochemical Deposition of Nanostructured Metals and Alloys from Ionic Liquids

机译:离子液体对纳米结构金属和合金的电化学沉积

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Metals like aluminium,magnesium,tungsten or their alloys cannot be electrodeposited from aqueous electrolytes.We have developed a procedure using AlCl_3-based ionic liquids for the deposition of nanostructured metals and alloys.The ionic liquids (IL) employed for these studies consist of mixtures of an inorganic (e.g.,AlCl_3) and an organic component (e.g.,1-butyl-3-methyl-imidazolliumchloride or [BMIm]Cl).In our contribution we describe the electrochemical deposition of less noble metals like Al or Fe and alloys like Al_xMn_(1-x) with a controlled nanostructure.The variation of physical and chemical process parameters allows the deposition of samples with crystallite sizes from 10 up to several hundred nm.Deposits prepared from IL's show remarkable properties.Based on nanoindentation measurements we observe crystallite size dependent microhardness for nanostructured aluminium (from 1.44GPa (100 nm) to 3.40GPa (14nm)).The thermal stability of the deposits was measured by high temperature X-ray diffraction.The deposits show a thermal stability up to 350 deg C resulting from oxide impurities in the grain boundaries.An activiation energy of 41 kJ/mol can be determined for the crystallite growth process.The magnetization curves of nanostructurd iron exhibit soft magnetic behavior;the coercivity is inverse proportional to the crystallite size.
机译:铝,镁,钨等金属或它们的合金不能从水性电解质中进行电沉积。我们已经开发了一种使用基于AlCl_3的离子液体沉积纳米结构金属和合金的方法。用于这些研究的离子液体(IL)由混合物组成无机(例如,AlCl_3)和有机成分(例如,1-丁基-3-甲基-咪唑鎓氯化物或[BMIm] Cl)的混合物。在我们的贡献中,我们描述了较稀有金属(如Al或Fe)和合金如Al_xMn_(1-x)具有可控的纳米结构。物理和化学工艺参数的变化允许沉积10至数百nm的微晶尺寸的样品.IL制备的沉积物表现出卓越的性能。纳米铝的尺寸依赖性显微硬度(从1.44GPa(100 nm)到3.40GPa(14nm))。通过高温测量沉积物的热稳定性X射线衍射分析表明,由于晶界中的氧化物杂质,这些沉积物显示出高达350摄氏度的热稳定性。微晶生长过程可以确定41 kJ / mol的活化能。纳米结构铁的磁化曲线显示出软磁行为;矫顽力与微晶尺寸成反比。

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