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Halometallate ionic liquids-revisited

机译:卤化金属离子液体

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Ionic liquids with chtorometaliate anions may not have been the first ionic liquids, however, it was their development that lead to the recognition that ionic liquids are a distinct, and useful, class of (functional) materials. While much of the phenomenal interest and attention over the past two decades has focussed on 'air and water stable' ionic liquids, research and application of chlorometallate systems has continued unabated albeit largely out of the main spotlight. The defining characteristic of chlorometallates is the presence of complex anionic equilibria, which depend both on the type and on the concentration of metal present, and leads directly to their characteristic and individual properties. Here, we review the experimental techniques that can be applied to study and characterise the anion speciation in these ionic liquids and, using recent examples, illustrate how their applications base is evolving beyond traditional applications in Lewis acidic catalysis and electrochemistry through to uses as soft and component materials, in the ionothermal synthesis of semiconductors, gas storage systems and key components in the development of biomass processing.
机译:具有金属氰化物阴离子的离子液体可能不是最早的离子液体,但是,正是由于它们的发展,人们才认识到离子液体是一种独特且有用的(功能)材料。尽管在过去的二十年中,许多令人瞩目的兴趣和注意力都集中在“对空气和水稳定”的离子液体上,但金属氯酸金属盐体系的研究和应用一直在持续增长,尽管很大程度上不在主要关注范围之内。金属氯酸盐的定义特征是存在复杂的阴离子平衡,这取决于所存在金属的类型和浓度,并直接导致其特征和个性。在这里,我们回顾了可用于研究和表征这些离子液体中阴离子形态的实验技术,并使用最近的例子说明了它们的应用基础是如何在路易斯酸性催化和电化学领域超越传统应用,逐步发展成为软和成分材料,用于半导体的离子热合成,气体存储系统和生物质加工关键部件的开发。

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