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首页> 外文期刊>Chemical science >An isocyanide ligand for the rapid quenching and efficient removal of copper residues after Cu/TEMPO-catalyzed aerobic alcohol oxidation and atom transfer radical polymerization
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An isocyanide ligand for the rapid quenching and efficient removal of copper residues after Cu/TEMPO-catalyzed aerobic alcohol oxidation and atom transfer radical polymerization

机译:用于快速淬火和高效除去Cu / Tempo催化的有氧醇氧化和原子转移自由基聚合后快速淬火和高效除去铜残基的异氰化物配体

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Transition metal catalysts play a prominent role in modern organic and polymer chemistry, enabling many transformations of academic and industrial significance. However, the use of organometallic catalysts often requires the removal of their residues from reaction products, which is particularly important in the pharmaceutical industry. Therefore, the development of efficient and economical methods for the removal of metal contamination is of critical importance. Herein, we demonstrate that commercially available 1,4-bis(3-isocyanopropyl)piperazine can be used as a highly efficient quenching agent ( QA ) and copper scavenger in Cu/TEMPO alcohol aerobic oxidation (Stahl oxidation) and atom transfer radical polymerization (ATRP). The addition of QA immediately terminates Cu-mediated reactions under various conditions, forming a copper complex that can be easily separated from both small molecules and macromolecules. The purification protocol for aldehydes is based on the addition of a small amount of silica gel followed by QA and filtration. The use of QA@SiO _(2) synthesized in situ results in products with Cu content usually below 5 ppm. Purification of polymers involves only the addition of QA in THF followed by filtration, leading to polymers with very low Cu content, even after ATRP with high catalyst loading. Furthermore, the addition of QA completely prevents oxidative alkyne–alkyne (Glaser) coupling. Although isocyanide QA shows moderate toxicity, it can be easily converted into a non-toxic compound by acid hydrolysis.
机译:过渡金属催化剂在现代有机和聚合物化学中发挥着突出作用,从而实现了许多学术和工业意义的转变。然而,使用有机金属催化剂通常需要从反应产物中除去它们的残基,这在制药工业中尤为重要。因此,用于去除金属污染的高效和经济方法的发展是至关重要的。在此,我们证明市售的1,4-双(3-异氰丙基)哌嗪可以用作高效的淬火剂(QA)和Cu / Tempo酒精有氧氧化(Stahl氧化)和原子转移自由基聚合中的铜清除剂( atrp)。添加质量Qa立即终止在各种条件下的Cu介导的反应,形成铜络合物,其可以容易地与小分子和大分子分离。用于醛的纯化方案基于加入少量硅胶,然后加入QA和过滤。使用QA @ SiO_(2)原位合成的产品,含有Cu含量通常低于5ppm的产品。聚合物的纯化仅涉及在THF中加入QA,然后过滤,导致具有非常低Cu含量的聚合物,即使在具有高催化剂负载的ATRP之后。此外,补充Qa完全防止氧化炔烃(Glaser)偶联。虽然异氰酸酯QA显示中等毒性,但它可以通过酸水解容易地转化为无毒化合物。

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