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Synthesis and characterization of epoxy resin of 99′-bis-(35-dibromo-4-hydroxyphenyl) anthrone-10 and its jute composite

机译:99-双-(35-二溴-4-羟基苯基)蒽酮-10及其黄麻复合材料的合成表征

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摘要

Epoxy resin of 9,9′-bis-(3,5-dibromo-4-hydroxyphenyl) anthrone-10 (EANBr, EEW 490) was synthesized and was characterized by IR and 1HNMR . EANBr and EPK3251 cured resin (EANBrC) were characterized by DSC and TGA at 10°Cmin−1 under nitrogen atmosphere. Broad DSC endothermic transitions of EANBr (265.3 °C) and EANBrC (291.4 °C) are due to some physical change and further confirmed by no weight loss in their TG thermograms. EANBr and EANBrC are thermally stable up to 340 °C and 310 °C, respectively. EANBr has followed single step degradation kinetics, while EANBrC has followed two step degradation kinetics. EANBr followed apparently zero order kinetics, while EANBrC followed apparently second order (1.80) and first order (0.89) degradation kinetics, respectively. Ea and A values of EANBrC (299.7 kJmol−1 and 6.32 × 1020 s−1) were found higher than that of EANBr (201 kJmol−1 and 2.45 × 1013 s−1) due to more rigid nature of EANBrC. The ΔS* value of the first step degradation of EANBrC (146.3 JK−1 mol−1) was found much more than that of EANBr (4.6 JK−1 mol−1). Jute – EANBr composite (J-EANBr) was prepared by compression molding technique at 120 °C for 5 h and under 20 Bar pressure. The observed tensile strength, flexural strength, electric strength and volume resistivity of J-EANBr are 24.7 MPa, 19.0 MPa, 1.8 kVmm−1 and 3.5 × 1012 ohm cm, respectively. Water absorption in J-EANBr was carried out at 30 ± 2 °C against distilled water, 10% NaCl, 10% HCl, 10% HNO3, 10% H2SO4, 10% NaOH, and 10% KOH and also in boiling water. The equilibrium time and equilibrium water content for J-EANBr in different environments are 384–432 h; 12.7–15.2%, respectively. The observed equilibrium water content and diffusivity trends of J-EANBr are KOH>H2SO4>HCl>NaOH>H2O>NaCl and H2O>NaCl>NaOH>H2SO4>HCl>KOH, respectively. Good thermo-mechanical, electrical properties and excellent hydrolytic stability of J-EANBr may be useful for high temperature applications in diverse fields.
机译:合成了9,9'-双-(3,5-二溴-4-羟基苯基)蒽酮-10(EANBr,EEW 490)环氧树脂,并通过红外光谱和 1 HNMR对其进行了表征。 EANBr和EPK3251固化树脂(EANBrC)在氮气气氛下,在10℃min -1 下通过DSC和TGA表征。 EANBr(265.3°C)和EANBrC(291.4°C)的DSC广泛的吸热转变是由于一些物理变化所致,并且通过TG热分析图的重量没有损失进一步得到证实。 EANBr和EANBrC分别在高达340°C和310°C的温度下具有热稳定性。 EANBr遵循单步降解动力学,而EANBrC遵循两步降解动力学。 EANBr显然遵循零级动力学,而EANBrC显然遵循二级(1.80)和一级(0.89)降解动力学。发现EANBrC的Ea和A值(299.7 kJmol -1 和6.32×10 20 s -1 )高于EANBr(201 kJmol -1 和2.45××1013 s -1 )是由于EANBrC具有更强的刚性。发现EANBrC第一步降解的ΔS * 值(146.3 JK -1 mol -1 )比EANBr( 4.6 JK -1 mol -1 )。黄麻– EANBr复合材料(J-EANBr)是通过压缩成型技术在120°C下5 h和20 Bar压力下制备的。 J-EANBr的拉伸强度,弯曲强度,电气强度和体积电阻率分别为24.7 MPa,19.0 MPa,1.8 kVmm -1 和3.5×10 12 ohm cm,分别。 J-EANBr中的吸水率是在30±2°C下用蒸馏水,10%NaCl,10%HCl,10%HNO3、10%H2SO4、10%NaOH和10%KOH在沸水中进行的。不同环境中J-EANBr的平衡时间和平衡水含量为384–432h;分别为12.7–15.2%。观察到的J-EANBr平衡水含量和扩散趋势分别为:KOH> H2SO4> HCl> NaOH> H2O> NaCl和H2O> NaCl> NaOH> H2SO4> HCl> KOH。 J-EANBr的良好的热机械,电性能和出色的水解稳定性可用于多种领域的高温应用。

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