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Holography as a technique for the study of photopolymerization kinetics in dry polymeric films with a nonlinear response

机译:全息技术作为研究具有非线性响应的干聚合物薄膜中光聚合动力学的技术

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摘要

A method is reported that makes use of holography to study the kinetics of the radical photopolymerization of acrylamide in a polyvinyl alcohol when the Kogelnik theory is applied. A mechanism of unimolecular termination by the radicals that initiate the polymerization reaction is postulated to calculate the quantum yield, the molar-extinction coefficient, the index of refraction, and the thickness of the film. The conversion percentage of monomers is obtained along with the ratio of rate constants of the mechanism of polymerization from the nonlinear fit of the transmittance curves, their angular response, and the temporal evolution of diffraction efficiency. Compared with previous holographic techniques, this method has the advantage of predicting these chemical parameters using all the data points of the temporal diffraction efficiency variation rather than being restricted to the linear zone of these curves. In this way the whole reaction process, not just the initial process, is taken into account.
机译:报道了一种使用全息术的方法,该方法在应用Kogelnik理论时研究了聚乙烯醇中丙烯酰胺的自由基光聚合动力学。假定通过引发聚合反应的自由基进行单分子封端的机制,以计算量子产率,摩尔消光系数,折射率和薄膜厚度。由透射率曲线的非线性拟合,其角响应和衍射效率的时间演变,可得出单体的转化率以及聚合机理的速率常数之比。与以前的全息技术相比,该方法的优势在于可以使用时间衍射效率变化的所有数据点来预测这些化学参数,而不必局限于这些曲线的线性区域。这样,整个反应过程,而不仅仅是初始过程都被考虑在内。

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