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首页> 外文期刊>Journal of Applied Polymer Science >Synthesis and characterization of oligo-2-hydroxy-1-naphthaldehyde and its Schiff base oligomers
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Synthesis and characterization of oligo-2-hydroxy-1-naphthaldehyde and its Schiff base oligomers

机译:-2-羟基-1-萘低聚物及其席夫碱低聚物的合成与表征

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In this study, oligo-2-hydroxy-1-naphthaldehyde (OHNA) was synthesized from the oxidative polycondensation of 2-hydroxy-1-naphthaldehyde (HNA) with air oxygen, NaOCl and H2O2 in an aqueous alkaline medium at 50-95degreesC. We determined the products and the oxidative polycondensation reaction conditions of HNA with oxidants such as air oxygen, NaOCl, and H2O2. In these reactions, H2O2 was more active than air oxygen and NaOCl and their optimum reaction conditions were studied. The products were characterized by H-1-NMR, FTIR, UV-visible, and elemental analysis. The respective number-average molecular weight, mass-average molecular weight, and polydispersity index values of OHNA and its Schiff base oligomers (compounds 1, 2, and 3) were found to be 500 g mol(-1), 1880 g mol(-1), and 3.75 for OHNA; 670 mol(-1), 2490 mol(-1), and 3.71 for compound 1; 390 g mol(-1), 1080 g mol(-1) and 2.77 for compound 2; and 320 g mol(-1), 670 g mol(-1), and 1.85 for compound 3. At the optimum reaction conditions, the yields of the reaction products were found to be 77.0% O-2, 78.0% H2O2, and 75.4% NaOCl. About 80% of the HNA was converted into OHNA. In addition, new Schiff based oligomers were synthesized from the condensation reaction of OHNA with p-aminophenol, triethyleneglycol bis(4-aminophenyl ether), and aniline and their structures and properties were determined. Thermogravimetric and dynamic thermal analyses showed OHNA and its Schiff base oligomers to be stable against thermooxidative decomposition. The weight losses of OHNA and its Schiff base oligomer compounds 1, 2, and 3 were found to be 5% at 175, 225, 190, and 230degreesC, respectively; 50% at 900, 590, 650, and 620degreesC, respectively; and 60, 80, 85, and 82%, respectively, at 1000degreesC. (C) 2003 Wiley Periodicals, lnc. [References: 14]
机译:在这项研究中,由2-羟基-1-萘醛(HNA)与氧,NaOCl和H2O2在含水碱性介质中于50-95℃氧化缩聚反应合成了低聚2-羟基-1-萘醛(OHNA)。我们确定了HNA的产物和与氧化剂(如空气氧,NaOCl和H2O2)的氧化缩聚反应条件。在这些反应中,H2O2比空气中的氧气和NaOCl更具活性,并研究了它们的最佳反应条件。通过H-1-NMR,FTIR,UV-可见和元素分析对产物进行表征。发现OHNA及其席夫碱低聚物(化合物1、2和3)的数均分子量,质均分子量和多分散性指数值分别为500 g mol(-1),1880 g mol( -1),OHNA为3.75;化合物1为670 mol(-1),2490 mol(-1)和3.71;化合物2为390 g mol(-1),1080 g mol(-1)和2.77;化合物3分别为320 g mol(-1),670 g mol(-1)和1.85。在最佳反应条件下,发现反应产物的收率为77.0%O-2、78.0%H2O2和NaOCl 75.4%。大约80%的HNA被转化为OHNA。此外,由OHNA与对氨基苯酚,三甘醇双(4-氨基苯基醚)和苯胺的缩合反应合成了新的基于Schiff的低聚物,并确定了它们的结构和性质。热重和动态热分析表明,OHNA及其Schiff碱低聚物对热氧化分解稳定。发现OHNA及其Schiff碱低聚物化合物1、2和3的失重分别在175、225、190和230℃下为5%;在900、590、650和620摄氏度下分别为50%;在1000℃下分别为60%,80%,85%和82%。 (C)2003 Wiley Periodicals,lnc。 [参考:14]

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