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过渡金属(II)氯化物如何与基于氯化铝的共晶离子液体相互作用:对电解质形态及磁性材料电沉积的见解

How a Transition-Metal(II) Chloride Interacts with a Eutectic AlCl -Based Ionic Liquid: Insights into the Speciation of the Electrolyte and Electrodeposition of Magnetic Materials.

作者信息

Pulletikurthi Giridhar, Weidenfeller Bernd, Borodin Andriy, Namyslo Jan C, Endres Frank

机构信息

Institute of Electrochemistry, Clausthal University of Technology, Arnold Sommerfeld Strasse 6, 38678, Clausthal-Zellerfeld, Germany.

Institute of Organic Chemistry, Clausthal University of Technology, Leibnitz Strasse 6, 38678, Clausthal-Zellerfeld, Germany.

出版信息

Chem Asian J. 2017 Oct 18;12(20):2684-2693. doi: 10.1002/asia.201700520. Epub 2017 Sep 25.

Abstract

Electrostatic interactions are characteristic of ionic liquids (ILs) and play a pivotal role in determining the formation of species when solutes are dissolved in them. The formation of new species/complexes has been investigated for certain ILs. However, such investigations have not yet focused on eutectic liquids, which are a promising class of ILs. These liquids (or liquid coordination complexes, LCCs) are rather new and are composed of cationic and anionic chloro complexes of metals. To date, these liquids have been employed as electrolytes to deposit metals and as solvents for catalysis. The present study deals with a liquid that is prepared by mixing a 1.2:1 mol ratio of AlCl and 1-butylpyrrolidine. An attempt has been made to understand the interactions of FeCl with the organic molecule using spectroscopy. It was found that dissolved Fe(II) species interact mainly with the IL anion and such interactions can lead to changes in the cation of the electrolyte. Furthermore, the viability of depositing thick magnetic films of Fe and Fe-Al has been explored.

摘要

静电相互作用是离子液体(ILs)的特性,在溶质溶解于其中时,对于确定物种的形成起着关键作用。对于某些离子液体,已经研究了新物种/配合物的形成。然而,此类研究尚未聚焦于低共熔液体,而低共熔液体是一类很有前景的离子液体。这些液体(或液体配位配合物,LCCs)相当新颖,由金属的阳离子和阴离子氯配合物组成。迄今为止,这些液体已被用作沉积金属的电解质和催化反应的溶剂。本研究涉及一种通过按1.2:1的摩尔比混合氯化铝和1-丁基吡咯烷制备的液体。已尝试使用光谱学来理解氯化铁与有机分子之间的相互作用。研究发现,溶解的亚铁物种主要与离子液体阴离子相互作用,并且这种相互作用会导致电解质阳离子发生变化。此外,还探索了沉积厚铁膜和铁 - 铝磁性膜的可行性。

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