首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Preparation of water-soluble, syndiotacticity-rich, low molecular weight poly(vinyl alcohol) microfibrils in high yields with the low-temperature polymerization of vinyl pivalate in tetrahydrofuran and saponification
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Preparation of water-soluble, syndiotacticity-rich, low molecular weight poly(vinyl alcohol) microfibrils in high yields with the low-temperature polymerization of vinyl pivalate in tetrahydrofuran and saponification

机译:特戊酸乙烯酯在四氢呋喃中的低温聚合和皂化反应可高收率制备水溶性,间同立构规整度低的低分子量聚乙烯醇微纤维

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摘要

To prepare water-soluble, syndiotacticity-rich poly(vinyl alcohol) (PVA) microfibrils for various industrial applications, we synthesized syndiotacticity-rich, low molecular weight PVA by the solution polymerization of vinyl pivalate (VPi) in tetrahydrofuran (THF) at low temperatures with 2,2'-azobis(2,4-dimethylvaleronitrile) (ADMVN) as an initiator and successive saponification of poly(vinyl pivalate) (PVPi). Effects of the initiator and monomer concentrations and the polymerization temperature were investigated in terms of the polymerization behaviors and molecular structures of PVPi and the corresponding syndiotacticity-rich PVA. The polymerization rate of V-Pi in THF was proportional to the 0.91 power of the ADMVN concentration, indicating the heterogeneous nature of THF polymerization. The low-temperature solution polymerization of VPi in THF with ADMVN proved to be successful in obtaining water-soluble PVA with a number-average degree of polymerization (P-n) of 300-900, a syndiotactic dyad content of 60-63%, and an ultimate conversion of VPi into PVPi of over 75%. Despite the low molecular weight of PVA with P-n = 800, water-soluble PVA microfibrillar fibers were prepared because of the high level of syndiotacticity. In contrast, for PVA with P-n = 330, shapeless and globular morphologies were observed, indicating that molecular weight has an important role in the in situ fibrillation of syndiotacticity-rich PVA. (C) 2002 Wiley Periodicals, Inc. [References: 25]
机译:为了制备适用于各种工业应用的水溶性,间同立构规整度的聚乙烯醇(PVA)微纤维,我们通过低聚新戊酸乙烯酯(VPi)在四氢呋喃(THF)中的溶液聚合反应,合成了富含间同立构规整的低分子量PVA。以2,2'-偶氮双(2,4-二甲基戊腈)(ADMVN)为引发剂,并连续皂化聚新戊酸乙烯酯(PVPi)。根据PVPi的聚合行为和分子结构以及相应的富含间同立构规整度的PVA,研究了引发剂和单体浓度以及聚合温度的影响。 V-Pi在THF中的聚合速率与ADMVN浓度的0.91次幂成正比,表明THF聚合具有非均质性。事实证明,用ADMVN在THF中进行VPi的低温溶液聚合可成功获得数均聚合度(Pn)为300-900,间规二元组含量为60-63%的水溶性PVA。 VPi最终转换为PVPi的75%以上。尽管P-n = 800的PVA分子量低,但由于间同立构规整度高,因此制备了水溶性PVA微原纤维。相反,对于P-n = 330的PVA,观察到无定形和球形形态,这表明分子量在富含间同立构规整性PVA的原纤维原纤化中具有重要作用。 (C)2002 Wiley Periodicals,Inc. [参考:25]

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