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一些新型萘并[2,1-e]吡唑并[5,1-c][1,2,4]三嗪的合成、性质及生物活性评价

Synthesis, Properties, and Biological Activity Evaluation of Some Novel Naphtho[2,1-e]pyrazolo[5,1-c][1,2,4]triazines.

作者信息

Burcă Ion, Bercean Vasile-Nicolae, Rusu Gerlinde-Iuliana, Pop Raluca, Diaconescu Alexandra-Mihaela, Badea Valentin, Péter Francisc

机构信息

Department of Applied Chemistry and Organic and Natural Compounds Engineering, Politehnica University Timisoara, Vasile Pârvan 6 Blvd., 300223 Timisoara, Romania.

Faculty of Pharmacy, "Victor Babeș" University of Medicine and Pharmacy Timișoara, 2 Eftimie Murgu Square, 300041 Timișoara, Romania.

出版信息

Int J Mol Sci. 2025 Aug 8;26(16):7681. doi: 10.3390/ijms26167681.

Abstract

This paper explores a synthetic pathway for naphtopyrazolotriazines utilizing amines as versatile starting materials. The approach leverages the reactivity of amines to construct the triazine core, fused with naphtho and pyrazolo cycles, through a series of controlled diazo coupling and cyclization reactions. By employing amines, this method allows for the introduction of varied substituents, enabling the tailoring of electronic and steric properties to suit specific potential applications. The significance of this work lies in its efficiency, scalability, and potential to synthesize compounds with tunable functionalities. Naphtopyrazolotriazines are of interest due to the presence of a pyrazolo triazine moiety, which is known for its bioactivity, including anticancer and antimicrobial properties, and their possible utility in optoelectronic materials. All synthesized compounds have been characterized by 1D and 2D NMR, IR, UV-Vis, and mass spectrometry. Additionally, UV-Vis and fluorescence spectra of the synthesized compounds, together with the frontier molecular orbitals energies, were calculated by DFT methods implemented in Gaussian 09W software.

摘要

本文探索了一种以胺类作为通用起始原料的萘并吡唑并三嗪的合成途径。该方法利用胺类的反应活性,通过一系列可控的重氮偶联和环化反应构建与萘环和吡唑环稠合的三嗪核心。通过使用胺类,该方法允许引入各种取代基,从而能够调整电子和空间性质以适应特定的潜在应用。这项工作的意义在于其效率、可扩展性以及合成具有可调功能化合物的潜力。萘并吡唑并三嗪因其存在吡唑并三嗪部分而备受关注,该部分以其生物活性(包括抗癌和抗菌特性)以及在光电子材料中的潜在用途而闻名。所有合成的化合物均通过一维和二维核磁共振、红外光谱、紫外可见光谱和质谱进行了表征。此外,利用高斯09W软件中实现的密度泛函理论方法计算了合成化合物的紫外可见光谱和荧光光谱以及前沿分子轨道能量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a4f/12386420/a05a43f6f862/ijms-26-07681-sch001.jpg

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