Glucopyranoside-substituted imidazolium-based chiral ionic liquids for Pd-catalyzed homo-coupling of arylboronic acids in water

IF 1.2 4区 化学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Carbohydrate Chemistry Pub Date : 2020-01-01 DOI:10.1080/07328303.2020.1788573
Zhonggao Zhou , Jing Li , Yue Wu , Yangyang Yuan , Lingfang Kong , Jun Xue , Zhiqiang Huang
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引用次数: 6

Abstract

Chiral ionic liquids (CILs) are widely used solvents and materials with prominent properties. Carbohydrate-derived imidazolium-based CILs represent a distinctive type of CILs possessing multiple chiral centers from natural chiral pool. Herein, a series of glucopyranoside-substituted imidazolium-based CILs (Glu-imi-CILs) were synthesized and evaluated as ligands for Pd-catalyzed homo-coupling reactions of arylboronic acids in water. The glucopyranoside substituent was instrumental for improving the catalytic activity of the resulting catalysts. Moreover, a Glu-imi-CIL with a free hydroxyl group for additional coordination was found to be the most efficient ligand. A series of symmetric biaryl compounds (13 examples) were synthesized from arylboronic acids by this method in high isolated yields (85−99%).

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葡萄糖吡喃苷取代咪唑基手性离子液体用于pd催化芳基硼酸在水中的均偶联
手性离子液体(CILs)是一种应用广泛的溶剂和材料,具有突出的性能。碳水化合物衍生的咪唑基CILs是一种独特的CILs类型,具有天然手性池中的多个手性中心。本文合成了一系列吡喃葡萄糖苷取代咪唑基CILs (Glu-imi-CILs),并对其作为pd催化芳基硼酸在水中的均偶联反应的配体进行了评价。葡萄糖吡喃苷取代基有助于提高催化剂的催化活性。此外,具有游离羟基的Glu-imi-CIL被发现是最有效的配体。用这种方法从芳基硼酸中合成了一系列对称的联芳基化合物(13个例子),分离收率高(85 ~ 99%)。
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来源期刊
Journal of Carbohydrate Chemistry
Journal of Carbohydrate Chemistry 化学-生化与分子生物学
CiteScore
2.10
自引率
0.00%
发文量
20
审稿时长
1 months
期刊介绍: The Journal of Carbohydrate Chemistry serves as an international forum for research advances involving the chemistry and biology of carbohydrates. The following aspects are considered to fall within the scope of this journal: -novel synthetic methods involving carbohydrates, oligosaccharides, and glycoconjugates- the use of chemical methods to address aspects of glycobiology- spectroscopic and crystallographic structure studies of carbohydrates- computational and molecular modeling studies- physicochemical studies involving carbohydrates and the chemistry and biochemistry of carbohydrate polymers.
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