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首页> 外文期刊>Polymers for advanced technologies >Ionic liquids as novel and green media for clean synthesis of soluble aromatic-aliphatic poly(amide-ester)s containing hydroxynaphthalene urazole moiety
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Ionic liquids as novel and green media for clean synthesis of soluble aromatic-aliphatic poly(amide-ester)s containing hydroxynaphthalene urazole moiety

机译:离子液体作为清洁合成含羟基萘尿嘧啶部分的可溶性芳族脂肪族聚(酰胺酯)的新型绿色介质

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摘要

Ionic liquids (IL)s are very attractive and environmentally acceptable solvents. They can be used as green media for a number of chemical processes. In this investigation, for the advancement of ecological safety and improvement of technological ability of this process, room temperature ionic liquids (RTIL)s and quaternary ammonium salt, tetrabutylammonium bromide (TBAB) have been used both as an environmentally benign solvent and catalyst for the polycondensation 4-(3-hydroxynaphthalene)-1,2,4-triazolidine-3,5-dione (3HNTD) with aliphatic diacid chlorides, eliminating the need for a volatile organic solvent (VOS) and additional catalyst. The reaction of monomer 3HNTD with acetyl chloride was performed in N,N-dimethylacetamide solution at different molar ratios, and the resulting mono-, di-, and trisubstituted derivatives were obtained in high yields and were finally used as models for polymerization reactions. The effects of various reaction parameters, such as the nature of the ILs, the amount of ILs, the reaction temperature, and the reaction time, on the yields and inherent viscosities of the resulting poly(amide-ester)s (PAE)s were studied. Polycondensation reactions successfully proceeded in IL without any additional extra components, such as triethylamine or pyridine, which are used in similar reactions in organic solvents. Therefore, ILs can act both as solvent and catalyst. In addition to the solubility test, inherent viscosity as a measure of molecular weight was determined. PAEs were obtained in high yields with inherent viscosities ranging from 0.18 to 0.34 dl g{sup}(-1). This method was also compared with conventional method for the synthesis of PAEs. Fluorimetric studies of the model compound as well as polymers were performed.
机译:离子液体(IL)是非常吸引人且环保的溶剂。它们可用作许多化学过程的绿色介质。在这项研究中,为了提高生态安全性和提高该工艺的技术能力,室温离子液体(RTIL)和季铵盐,四丁基溴化铵(TBAB)已被用作环境友好的溶剂和催化剂。与脂肪族二酰氯进行4-(3-羟基萘)-1,2,4-三唑烷-3,5-二酮(3HNTD)的缩聚反应,不需要挥发性有机溶剂(VOS)和其他催化剂。单体3HNTD与乙酰氯的反应是在N,N-二甲基乙酰胺溶液中以不同的摩尔比进行的,所得到的单,二和三取代的衍生物以高收率获得,并最终用作聚合反应的模型。各种反应参数(如IL的性质,IL的数量,反应温度和反应时间)对所得聚酰胺酰胺酯(PAE)的收率和固有粘度的影响为研究。无需任何额外的额外成分(例如三乙胺或吡啶)就可以在IL中成功进行缩聚反应,这些成分可用于有机溶剂的类似反应中。因此,IL既可以充当溶剂又可以充当催化剂。除了溶解度测试之外,还测定了固有粘度作为分子量的量度。 PAE以高产率获得,固有粘度为0.18至0.34 dl g {sup}(-1)。还将该方法与用于合成PAE的常规方法进行了比较。对模型化合物以及聚合物进行了荧光分析。

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