首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Supramolecular Chemistry And Self-assembly Special Feature: A self-assembled redox-responsive receptor for the selectiveextraction of LiCl from water
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Supramolecular Chemistry And Self-assembly Special Feature: A self-assembled redox-responsive receptor for the selectiveextraction of LiCl from water

机译:超分子化学和自组装特征:一种自组装的氧化还原反应受体可选择性从水中提取氯化锂

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摘要

There is considerable interest in synthetic ionophores with high affinity and selectivity for Li+. But so far, compounds that selectively bind Li+ in the presence of other alkali and alkaline earth metal ions are rare and current approaches toward this goal are often accompanied with substantial synthetic efforts. Here we describe a trinuclear ruthenium metallamacrocyclic complex (1) that was obtained by self-assembly of ruthenium halfsandwich complexes and 3-hydroxy-2-pyridone ligands. This complex was shown to be an extremely potent receptor for LiCl with an affinity high enough to extract LiCl from water. The selectivity of this receptor is exceptional: even in the presence of a large excess of Na+, K+, Cs+, Ca2+, and Mg2+, Li+ was extracted exclusively. The Li+/Na+ selectivity ratio was determined to be higher than 1,000:1. Compared with other synthetic ionophores, the receptor 1 offers two additional advantages: (i) the synthesis can be accomplished in one step by using simple startingmaterials; and (ii) the presence of lithium ions can bedetected electrochemically. Complex 1 is therefore a very attractivecandidate for the construction of a Li+-specificchemosensor.
机译:对于Li + 具有高亲和力和选择性的合成离子载体引起了人们的极大兴趣。但是到目前为止,在其他碱金属和碱土金属离子的存在下能选择性结合Li + 的化合物很少见,而目前为实现这一目标所采取的方法往往伴随着大量的合成努力。在这里,我们描述了通过钌半三明治复合物和3-羟基-2-吡啶酮配体的自组装获得的三核钌金属lamcrocrocrocompound(1)。该复合物被证明是LiCl的强效受体,其亲和力足以从水中提取LiCl。该受体的选择性非常好:即使在Na + ,K + ,Cs + ,Ca 2 + 和Mg 2 + ,Li + 专门提取。 Li + / Na + 的选择性比被确定为高于1,000:1。与其他合成离子载体相比,受体1具有两个额外的优点:(i)合成可以通过一个简单的步骤就可以一步完成材料; (ii)锂离子的存在可以是电化学检测。因此,综合大楼1非常吸引人Li + 特异性构建的候选对象化学传感器。

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