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Cross-Linked Chitosan/Multi-Walled Carbon Nanotubes Composite as Ecofriendly Biocatalyst for Synthesis of Some Novel Benzil Bis-Thiazoles

机译:交联壳聚糖/多壁碳纳米管复合为Ecofriendly生物催化剂用于合成一些新的苯齐尔双唑尔斯

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摘要

Aminohydrazide cross-linked chitosan (CLCS) and its MWCNTs (CLCS/MWCNTs) were formulated and utilized as a potent ecofriendly basic heterogeneous biocatalyst under ultrasonic irradiation for synthesis of two novel series of benzil bis-aryldiazenylthiazoles and benzil bis-arylhydrazonothiazolones from the reaction of benzil bis-thiosemicarbazone with 2-oxo-N′-arylpropanehydrazonoyl chlorides and ethyl 2-chloro-2-(2-phenylhydrazono) acetates, respectively. The chemical structures of the newly synthesized derivatives were elucidated by spectral data and alternative methods, where available. Additionally, their yield % was estimated using a traditional catalyst as TEA and green recyclable catalysts as CLCS and CLCS/MWCNTs composite in a comparative study. We observed that, under the same reaction conditions, the yield % of the desired products increased by changing TEA to CLCS then to CLCS/MWCNT from 72–78% to 79–83% to 84–87%, respectively. The thermal stability of the investigated samples could be arranged as CLCS/MWCNTs composite > CLCS > chitosan, where the weight losses of chitosan, CLCS and CLCS/MWCNTs composite at 500 °C were 65.46%, 57.95% and 53.29%, respectively.
机译:配制氨基酰肼交联壳聚糖(CLCS)及其MWCNT(CLCS / MWCNT),并在超声辐射下作为一种有效的Ecofriend基本的异质生物催化剂,用于合成两种新型系列苯齐尔双溴苯齐唑和苯齐尔双芳基肼噻唑酮的反应BENZIL BIS-THIOSICALBAZONE含有2-氧代-N'-芳基丙烷酰亚肼酰氯和乙基2-氯-2-(2-苯基氢芳基)乙酸盐。通过光谱数据和可用的替代方法阐明了新合成衍生物的化学结构。另外,在比较研究中使用传统催化剂作为CLC和CLCS / MWCNTS复合材料,估计它们的产量%。我们观察到,在相同的反应条件下,所需产物的产率%通过将茶叶变为Clcs,即Clcs / MwCNT分别为72-78%至79-83%至84-87%。所研究的样品的热稳定性可以作为CLCS / MWCNTS复合材料> CLCS>壳聚糖,其中壳聚糖,CLC和CLCS / MWCNTs复合材料的重量损失分别为65.46%,57.95%和53.29%。

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