Melamine phosphate-modified magnetic chitosan: a novel biocompatible catalyst for the synthesis of biological tetrahydrodipyrazolopyridine and pyrazolopyranopyrimidine derivatives

Maryam Mousavi-Ebadi, J. Safaei‐Ghomi
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Abstract

A novel biocompatible composite was fabricated by the functionalization of magnetic chitosan with the melamine phosphate (MP) ionic compound to serve as a recoverable and bifunctional catalyst, aiming at the diversity-oriented generation of biological tetrahydropyrazolopyridine and pyrazolopyrimidine derivatives. This involved a meticulously orchestrated reaction, exploiting the in situ generated pyrazole alongside aromatic aldehydes, ammonium acetate, and (thio) barbituric acid. The present work manifests outstanding advantages, offering a novel and great method for the optimal synthesis of two valuable heterocyclic series especially five new derivatives. The resulting novel biocompatible composite was comprehensively characterized through a range of analytical techniques, including FT-IR, NH3 and CO2-TPD, XRD, TEM, FE-SEM, VSM, EDX, elemental CHNS analysis, ICP-MS, and NMR spectroscopy. Notably, the study represents a critical step in the preparation of advanced materials from accessible and cost-effective precursors.
磷酸三聚氰胺修饰的磁性壳聚糖:合成生物四氢二吡唑并吡喃嘧啶衍生物的新型生物兼容催化剂
通过将磁性壳聚糖与磷酸三聚氰胺(MP)离子化合物功能化,制成了一种新型生物兼容复合材料,作为一种可回收的双功能催化剂,旨在以多样性为导向生成生物四氢吡唑并吡啶和吡唑并嘧啶衍生物。这涉及一个精心策划的反应,利用原位生成的吡唑以及芳香醛、乙酸铵和(硫代)巴比妥酸。本研究成果具有突出优势,为优化合成两个有价值的杂环系列,特别是五个新衍生物提供了一种新颖的好方法。通过一系列分析技术,包括傅立叶变换红外光谱、NH3 和 CO2-TPD、XRD、TEM、FE-SEM、VSM、EDX、CHNS 元素分析、ICP-MS 和 NMR 光谱,对所制备的新型生物相容性复合材料进行了全面表征。值得注意的是,这项研究标志着利用可获得且具有成本效益的前体制备先进材料迈出了关键一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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