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Effect of colloidal fillers on the cross-linking of a UV-curable polymer:gel point rheology and thewinter-chambon criterion

机译:胶体填料对可紫外光固化聚合物交联的影响:凝胶点流变学和寒冬标准

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The effect of colloidal silica fillers on the cross-linking behavior of a model IJV-curable polymer system (thiol—ene) is studied using in situ rheology and real-time FTIR spectroscopy. The validity of the Winter—Chambon criterion (convergence of the loss tangents at the gel point) is examined for the cross-linking of these filled polymers, some of which are strongly flocculated dispersions (physical gels) prior to chemical cross-linking. Two different types of colloidal silica particles are studied: one with octyl chains tethered to the surface and the other with methyl surface groups. The Winter-Chambon criterion is satisfied for all samples containing the methyl-terminated silica. However, the criterion breaks down for samples containing the octyl-modified silica, with the loss tangents not converging at any single point. This suggests the absence of a self-similar critical gel at the gel point in the latter case. Neither type of silica particles alters the mechanism of the cross-linking reaction, as revealed by FTJR spectroscopy, but they do retard the cross-linking kinetics. An alternate method is suggested for determining the chemical gel point of filled systems that fail to obey the Winter-Chambon criterion. This method involves monitoring the critical strain (limit of the linear viscoelastic region) at various UV exposure times. A dramatic increase is observed in the critical strain at the gel point, indicating a transition from weak, physical bonds to strong, covalent cross-links.
机译:使用原位流变学和实时FTIR光谱研究了胶态二氧化硅填料对IJV型可固化聚合物体系(硫醇-烯)的交联行为的影响。对于这些填充聚合物的交联,检查了Winter-Chambon准则(凝胶切点处的损耗角正切的收敛性)的有效性,其中一些是在化学交联之前强烈絮凝的分散体(物理凝胶)。研究了两种不同类型的胶体二氧化硅颗粒:一种具有在表面束缚的辛基链,另一种具有甲基表面基团。所有包含甲基封端的二氧化硅的样品均满足Winter-Chambon标准。但是,对于含有辛基改性二氧化硅的样品,该标准不成立,损耗角正切在任何一点上均不收敛。这表明在后一种情况下,在凝胶点不存在自相似的临界凝胶。 FTJR光谱学表明,两种类型的二氧化硅颗粒都不会改变交联反应的机理,但它们确实会延迟交联动力学。建议使用另一种方法来确定不符合Winter-Chambon标准的填充系统的化学胶凝点。该方法涉及在各种紫外线暴露时间下监测临界应变(线性粘弹性区域的极限)。在凝胶点的临界应变中观察到急剧增加,表明从弱的物理键向强的共价交联过渡。

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