首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >A ferrocene functionalized Schiff base containing Cu(II) complex: synthesis, characterization and parts-per-million level catalysis for azide alkyne cycloaddition
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A ferrocene functionalized Schiff base containing Cu(II) complex: synthesis, characterization and parts-per-million level catalysis for azide alkyne cycloaddition

机译:含Cu(II)复合物的二茂铁官能化席夫碱:合成,表征和份额为叠氮化物alkyne环加装配的零百万水平催化

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摘要

Atom economy is one of the major factors in developing catalysis chemistry. Using the minimum amount of catalyst to obtain the maximum product yield is of the utmost priority in catalysis, which drives us to use parts-per-million (ppm) levels of catalyst loadings in syntheses. In this context, a new ferrocene functionalized Schiff base and its copper(II) complex have been synthesized and characterized. This Cu(II) complex is employed as a catalyst for popular 'click chemistry', where 1,2,3-triazoles are the end product. As low as 5 ppm catalyst loading is enough to produce gram scale product, and highest turnover number (TON) and turnover frequency (TOF) values of 140 000 and 70 000 h(-1) are achieved, respectively. Furthermore, this highly efficient protocol has been successfully applied to the preparation of diverse functionalized materials with pharmaceutical, labelling and supramolecular properties.
机译:原子经济是开发催化化学的主要因素之一。 使用最小量的催化剂以获得最大产物产量在催化方面最优先于催化,这使我们在合成中使用百万份(PPM)催化剂载体水平。 在这种情况下,已经合成并表征了新的二氧化芳烃官能化席夫碱及其铜(II)络合物。 该Cu(II)复合物作为催化剂的催化剂,用于受欢迎的“单击化学”,其中1,2,3-三唑是最终产品。 低至5ppm催化剂负载足以产生克刻度的产品,并且分别实现了最高的营收率(吨)和周转频率(TOF)值为140 000和70 000小时(-1)。 此外,这种高效的协议已成功应用于使用药物,标记和超分子性质的不同官能化材料的制备。

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