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可重复使用的纳米氧化锆催化苯并咪唑的合成及其抗菌和抗真菌活性。

Reusable Nano-Zirconia-Catalyzed Synthesis of Benzimidazoles and Their Antibacterial and Antifungal Activities.

机构信息

Department of Chemistry, Krishna University, Machilipatnam 521001, Andhra Pradesh, India.

Department of Zoology, College of Science, King Saud University, Riyadh 11451, Saudi Arabia.

出版信息

Molecules. 2021 Jul 12;26(14):4219. doi: 10.3390/molecules26144219.

Abstract

In this article, a zirconia-based nano-catalyst (Nano-ZrO), with intermolecular C-N bond formation for the synthesis of various benzimidazole-fused heterocycles in a concise method is reported. The robustness of this reaction is demonstrated by the synthesis of a series of benzimidazole drugs in a one-pot method. All synthesized materials were characterized using spectroscopy as well as microanalysis data. Furthermore, the synthesis of nano-ZrO was processed using a standard hydrothermal technique in pure form. The crystal structure of nano-ZrO and phase purity were studied, and the crystallite size was calculated from XRD analysis using the Debye-Scherrer equation. Furthermore, the antimicrobial activity of the synthesized benzimidazole drugs was evaluated in terms of Gram-positive, Gram-negative, and antifungal activity, and the results were satisfactory.

摘要

本文报道了一种基于氧化锆的纳米催化剂(Nano-ZrO),可通过分子间 C-N 键形成,以简洁的方法合成各种苯并咪唑稠合杂环。该反应的稳健性通过一锅法合成一系列苯并咪唑药物得到了证明。所有合成的材料均使用光谱法以及微量分析数据进行了表征。此外,纳米-ZrO 的合成是通过标准水热技术在纯态下进行的。研究了纳米-ZrO 的晶体结构和相纯度,并使用 X 射线衍射分析的德拜-谢勒方程从 XRD 分析中计算出了晶粒尺寸。此外,还根据革兰氏阳性、革兰氏阴性和抗真菌活性评估了合成的苯并咪唑药物的抗菌活性,结果令人满意。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f522/8304051/594a8b931d0a/molecules-26-04219-g001.jpg

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