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Synthesis and Intrinsic Viscosity-molecular Weight Relationship of Poly(ethylene adipate)

机译:聚己二酸乙二醇酯的合成及本征粘度-分子量关系

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In this work, two series of poly (ethylene adipate) (PEA) samples with broad and narrow molecular weight distribution (MWD) were prepared by the polymerization between adipic acid and ethylene glycol. An accurate and swift method, one-point method, was used to determine the intrinsic viscosity of PEA samples. On the basis of Mark-Houwink-Sakurada (MHS) equation, the relationship between the intrinsic viscosity and molecular weight was built for PEA (Mw≤11000) in tetrahydrofuran at 298K. The average molecular weights (Mn, Mv, Mw and Mz) were determind by using Gel-Permeation chromatography (GPC). The constants, a and K of MHS equation for the PEA samples dissolved in tetrahydrofuran at 298K were determined by a numerical method, and the influence of polydispersity correction factor (qMHS) on the relationships were studied for PEA with narrow MWD (1.107-1.219) and broad MWD (1.754-1.872).
机译:在这项工作中,通过己二酸和乙二醇的聚合反应,制备了两个系列的宽(窄)分子量分布(MWD)的聚己二酸(PEA)样品。一种准确,快速的方法(单点方法)用于测定PEA样品的特性粘度。根据Mark-Houwink-Sakurada(MHS)方程,建立了298K下四氢呋喃中PEA(Mw≤11000)的特性粘度与分子量的关系。通过使用凝胶渗透色谱法(GPC)测定平均分子量(Mn,Mv,Mw和Mz)。通过数值方法确定了在298K下溶于四氢呋喃的PEA样品的MHS方程的常数,a和K,并研究了多分散校正因子(qMHS)对窄MWD(1.107-1.219)的PEA的关系的影响。和广泛的MWD(1.754-1.872)。

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