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首页> 外文期刊>RSC Advances >Solvent-free 1H-tetrazole, 1,2,5,6-tetrahydronicotinonitrile and pyrazole synthesis using quinoline based ionic fluoride salts (QuFs): thermal and theoretical studies
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Solvent-free 1H-tetrazole, 1,2,5,6-tetrahydronicotinonitrile and pyrazole synthesis using quinoline based ionic fluoride salts (QuFs): thermal and theoretical studies

机译:使用喹啉基离子型氟化物盐(QuFs)合成无溶剂的1H-四唑,1,2,5,6-四氢丁腈和吡唑:热学和理论研究

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摘要

The role of ionic liquids as catalyst and solvent to mediate organic reactions is well documented. While imidazole and pyridine-based ionic liquids have traditionally been the ionic liquids of choice for organic synthesis, imidazole's inert nature and pyridine's toxicity are often viewed as impediments. In the present study, we have synthesized ionic liquids (QuFs), employing the non-toxic quinoline ring. The desired QuFs were readily prepared via N-alkylation and corresponding anion exchange with fluoride ions. The structures of the synthesized QuFs were confirmed with advanced spectroscopic techniques such as H-1 and C-13 NMR, IR and mass spectrometry. The potential of these newly synthesized QuFs as catalyst for click chemistry and other reactions was explored by carrying out synthesis of 5-(p-methylphenyl)-H-1-tetrazole (7), 2-dicyanomethylene-6-methyl-4,6-bis(m-methoxyphenyl)-1,2,5,6-tetrahydronicotinonitrile (12), and 3,5-dimethyl-1-(p-methoxy)-1H-pyrazole (15). Detailed thermal analysis (DSC, TGA and DTG) was carried out to study the thermal stability of synthesized QuFs. Density functional theory (DFT) calculations and molecular dynamics simulations were also carried in order to establish a relationship between binding energies, and structural and dynamic characteristics of QuFs.
机译:离子液体作为介导有机反应的催化剂和溶剂的作用已得到充分证明。传统上,咪唑和吡啶基离子液体是有机合成的首选离子液体,但咪唑的惰性和吡啶的毒性通常被视为障碍。在本研究中,我们已经合成了使用无毒喹啉环的离子液体(QuFs)。通过N-烷基化和与氟离子的相应阴离子交换,可以容易地制备所需的QuF。合成的QuFs的结构已通过先进的光谱技术(例如H-1和C-13 NMR,IR和质谱法)确认。通过合成5-(对甲基苯基)-H-1-四唑(7),2-二氰基亚甲基-6-甲基-4,6,探索了这些新合成的QuFs用作点击化学和其他反应催化剂的潜力。 -双(间甲氧基苯基)-1,2,5,6-四氢丁腈(12)和3,5-二甲基-1-(对甲氧基)-1H-吡唑(15)。进行了详细的热分析(DSC,TGA和DTG)以研究合成QuF的热稳定性。为了建立结合能与QuFs的结构和动力学特性之间的关系,还进行了密度泛函理论(DFT)计算和分子动力学模拟。

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