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首页> 外文期刊>Macromolecules >Impact of Imidazolium-Based Ionic Liquids on the Curing Kinetics and Physicochemical Properties of Nascent Epoxy Resins
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Impact of Imidazolium-Based Ionic Liquids on the Curing Kinetics and Physicochemical Properties of Nascent Epoxy Resins

机译:基于咪唑鎓的离子液体对新生环氧树脂固化动力学和物理化学性质的影响

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We investigated the influence of anion type (salicylate, [(MOB)MIm][Sal], vs chloride, [(MOB)MIm][Cl]) of imidazolium- based ionic liquid (IL) and its content on the curing kinetics of bisphenol A diglicydyl ether (DGEBA of molecular weight M-n = 340 g/mol). Further physicochemical properties (i.e., glass transition temperature, T-g, and conductivity, sigma(dc)) of produced polymers were investigated. The polymerization of the studied systems was examined at various molar ratios (1:1, 10:1, and 20:1) at different reaction temperatures (T-reaction = 353-383 K) by using differential scanning calorimetry (DSC). Interestingly, both DGEBA/IL compositions studied herein revealed significantly different reaction kinetics and yielded materials of completely distinct physical properties. Surprisingly, in contrast to [(MOB)MIm][Cl], for the low concentration of [(MOB)MIm] [Sal] in the reaction mixture, an additional step in the kinetic curves, likely due to the combined enhanced initiation activity of anion (salicylate)-cation (imidazolium-based), was noted. To thoroughly analyze the kinetics of all studied systems, including the two-step kinetics of DGEBA/[(MOB)MIm] [Sal], we applied a new approach that relies on the combination of the two phenomenological Avrami equations. Analysis of the determined constant rates revealed that the reaction occurring in the presence of the salicylate anion is characterized by higher activation energy with respect to those with the chloride. Moreover, DGEBA/[(MOB)MIm][Sal] cured materials have higher T g in comparison to DGEBA polymerized with [(MOB)MIm][Cl] independent of the IL concentration. This fact might indicate that, most likely, the products of hardening are highly cross-linked (high T-g) or oligomeric linear polymers (low T-g) in the former and latter cases, respectively. Such a change in the chemical structure of the polymer is also reflected in the dc conductivity measured at the glass transition temperature, which is much higher for DGEBA cured with [(MOB)MIm][Cl]. Herein, we have clearly demonstrated that the type of anion has a crucial impact on the polymerization mechanism, kinetics, and properties of produced materials.
机译:我们调查了咪唑鎓基离子液体(IL)的阴离子型(水杨酸,[(MOM)MIM] [SAL],Vs氯,[(MOB)MIM] [CL])及其含量对固化动力学的影响双酚A碳水化合物(分子量Mn = 340g / mol的DGEBA)。研究了产生的聚合物的进一步物理化学性质(即,玻璃化转变温度,T-G和电导率,Sigma(DC))。通过使用差示扫描量热法(DSC),在不同的反应温度(T-反应= 353-383k)的各种摩尔比(1:1,10:1和20:1)以各种摩尔比(1:1,10:1和20:1)检查研究的聚合。有趣的是,本文研究的DGEBA / IL组合物均显示出显着不同的反应动力学,并产生完全不同的物理性质的物质。令人惊讶的是,与[(暴徒)MIM]相比,在反应混合物中的低浓度的[(暴徒)MIM] [SAL]中,在动力学曲线中的另外的步骤,可能是由于增强的增强活性注意到阴离子(水杨酸盐) - 化(基于Imidazolium的)。为了彻底分析所有研究的系统的动力学,包括DGEBA / [(MOB)MIM] [SAL]的两步动力学,我们应用了一种依赖于两种现象学AVRAMI方程组合的新方法。确定的恒定速率的分析显示,在水杨酸盐阴离子存在下发生的反应的特征在于相对于氯化物的较高的活化能量。此外,与与IL浓度无关的DGEBA,DGEBA / [(MOB)MIM] [SAL]固化材料具有更高的Tg,与[(MOB)MIM] [CL]无关。这一事实可能表明,最有可能的是,硬化产物分别在前者和后一种情况下具有高度交联(高T-G)或低聚线性聚合物(低T-G)。这种聚合物的化学结构的这种变化也反映在玻璃化转变温度下测量的DC电导率,其对于用[(MOB)MIM] [CL]固化的DGEBA高得多。在此,我们清楚地证明了阴离子的类型对生产材料的聚合机理,动力学和性质具有至关重要的影响。

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