Cu(II)/citric acid grafted to chitosan by dendritic units of melamine as a novel and highly efficient heterogeneous catalyst for the synthesis of 2-aminobenzothiazole derivatives

IF 4.7 3区 材料科学 Q2 CHEMISTRY, PHYSICAL Colloid and Interface Science Communications Pub Date : 2023-05-01 DOI:10.1016/j.colcom.2023.100711
Babak Fattahi, Mohammad G. Dekamin
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引用次数: 2

Abstract

In this paper, a new cross-linked chitosan by G1 dendrimer from melamine terminated by citric acid groups to support Cu(II) nanoparticles (CS@CA-Me-CA@Cu) was designed and prepared. Subsequently, the prepared nanocomposite was characterized using different spectroscopic, microscopic and analytical techniques such as FTIR, XRD, FESEM, TGA and EDX. The supramolecular CS@CA-Me-CA@Cu demonstrates higher thermal and chemical stability than its components. In addition, in order to investigate the catalytic performance of the CS@CA-Me-CA@Cu bio-based nanocomposite it was used, as a Lewis acidic and green heterogeneous catalyst, for the preparation of 2-aminobenzothiazole derivatives under green conditions. Also, other advantages of this new bio-based nanocomposite include easy preparation, high catalytic activity, recyclability, and reuse with a gradual decreasing in its catalytic activity.

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三聚氰胺枝状单元接枝壳聚糖上的Cu(II)/柠檬酸作为新型高效非均相催化剂用于合成2-氨基苯并噻唑衍生物
本文以三聚氰胺为原料,以柠檬酸基封端的G1树枝状大分子为载体,制备了一种新型的交联壳聚糖(CS@CA-Me-CA@Cu)。随后,使用不同的光谱、显微镜和分析技术,如FTIR、XRD、FESEM、TGA和EDX,对所制备的纳米复合材料进行了表征。超分子CS@CA-Me-CA@Cu表现出比其组分更高的热稳定性和化学稳定性。此外,为了研究CS@CA-Me-CA@Cu生物基纳米复合材料作为Lewis酸性和绿色多相催化剂,在绿色条件下制备2-氨基苯并噻唑衍生物。此外,这种新型生物基纳米复合材料的其他优点包括易于制备、高催化活性、可回收性和催化活性逐渐降低的重复使用。
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来源期刊
Colloid and Interface Science Communications
Colloid and Interface Science Communications Materials Science-Materials Chemistry
CiteScore
9.40
自引率
6.70%
发文量
125
审稿时长
43 days
期刊介绍: Colloid and Interface Science Communications provides a forum for the highest visibility and rapid publication of short initial reports on new fundamental concepts, research findings, and topical applications at the forefront of the increasingly interdisciplinary area of colloid and interface science.
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