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Accomplishing simple solubility-based separations of rare earth elements with complexes bearing size-sensitive molecular apertures

机译:通过具有大小敏感分子孔径的配合物完成稀土元素的简单基于溶解度的分离

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摘要

Rare earth (RE) metals are critical components of electronic materials and permanent magnets. Recycling of consumer materials is a promising new source of rare REs. To incentivize recycling, there is a clear need for the development of simple methods for targeted separations of mixtures of RE metal salts. Metal complexes of a tripodal hydroxylaminato ligand, TriNOx3–, featured a size-sensitive aperture formed of its three η2-(N,O) ligand arms. Exposure of cations in the aperture induced a self-associative equilibrium comprising RE(TriNOx)THF and [RE(TriNOx)]2 species. Differences in the equilibrium constants Kdimer for early and late metals enabled simple separations through leaching. Separations were performed on RE1/RE2 mixtures, where RE1 = La–Sm and RE2 = Gd–Lu, with emphasis on Eu/Y separations for potential applications in the recycling of phosphor waste from compact fluorescent light bulbs. Using the leaching method, separations factors approaching 2,000 were obtained for early–late RE combinations. Following solvent optimization, >95% pure samples of Eu were obtained with a 67% recovery for the technologically relevant Eu/Y separation.
机译:稀土(RE)金属是电子材料和永磁体的重要组成部分。消费材料的回收是稀有稀土的有希望的新来源。为了激励回收,显然需要开发用于有目的地分离稀土金属盐的混合物的简单方法。三脚架羟基氨基配体TriNOx 3-的金属配合物具有由其三个η 2 -(N,O)配体臂形成的尺寸敏感孔。孔中阳离子的暴露引起包含RE(TriNOx)THF和[RE(TriNOx)] 2物种的自缔合平衡。早期和晚期金属的平衡常数Kdimer的差异使通过浸出的简单分离成为可能。对RE1 / RE2混合物进行了分离,其中RE1 = La–Sm,RE2 = Gd–Lu,重点是Eu / Y分离,可用于紧凑型荧光灯中磷光体的回收。使用浸出方法,早期-晚期稀土组合的分离因子接近2000。经过溶剂优化后,获得了纯度> 95%的Eu样品,回收率达到67%,用于技术上相关的Eu / Y分离。

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