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首页> 外文期刊>Journal of Applied Polymer Science >Formation of SBS Triblock Copolymers Using Waste Soybean Oil as Coupling Agent
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Formation of SBS Triblock Copolymers Using Waste Soybean Oil as Coupling Agent

机译:以废豆油为偶联剂形成SBS三嵌段共聚物

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摘要

Triglyceride in the waste soybean oil (WSO) was used as coupling agent to synthesize a linear styrene-butadiene-styrene (SBS) triblock copolymer. The reaction occurred via a living anionic polymerization of styrene-butadiene block copolymer (SB) using n-butyllithium as initiator and cyclohexane as solvent and followed by the coupling reaction with the added WSO. Gel permeation chromatography (GPC) showed that for all SB-Li precursors except the one with the M_n of 1000 g/mol, the resultant products consisted of two different sizes, one with the nearly comparable size with the precursor, the other with a M_n two-fold higher than the precursor. On the other hand, the reaction of the SB-Li precursor with the M_n of 1000 g/mol and the WSO only resulted in forming the molecule with a M_n two-fold higher than the precursor. The results from the GPC and spectral analysis supported that upon the nucleophilic attack the ester group of the triglyceride in the WSO was broken, giving the SB-C(O)-fatty acid susceptible to the second the nucleophilic attack, thus forming the coupled product. The size of the SB-Li precursor, the SB-Li: WSO molar ratio, the S:B weight ratio and the coupling time were found to influence on the coupling efficiency. However, the size of the SB-Li precursor showed highest impact on the coupling efficiency at which the larger the SB-Li precursor, the lower the coupling efficiency. Regardless of the low coupling efficiency of the WSO, the WSO was found to be a potential coupling agent for the formation of the linear triblock copolymer. This was because the SBS triblock copolymer containing high SB diblock copolymers and prepared by the WSO showed slightly higher tensile strength than the one with less SB diblock copolymers prepared by a traditional coupling agent.
机译:废大豆油中的甘油三酸酯(WSO)被用作偶联剂,以合成线性苯乙烯-丁二烯-苯乙烯(SBS)三嵌段共聚物。该反应通过使用正丁基锂作为引发剂和环己烷作为溶剂的苯乙烯-丁二烯嵌段共聚物(SB)的活性阴离子聚合进行,然后与添加的WSO进行偶联反应。凝胶渗透色谱法(GPC)显示,对于所有SB-Li前体,除了M_n为1000 g / mol的前驱体外,所得产物均由两种不同的尺寸组成,一种与前驱体的尺寸几乎相当,另一种具有M_n比前者高两倍。另一方面,具有1000 g / mol M_n的SB-Li前体与WSO的反应仅导致形成M_n比前体高两倍的分子。 GPC和光谱分析的结果表明,亲核攻击时,WSO中甘油三酸酯的酯基被破坏,使SB-C(O)-脂肪酸易受第二次亲核攻击,从而形成偶联产物。发现SB-Li前体的尺寸,SB-Li∶WSO摩尔比,S∶B重量比和偶联时间对偶联效率有影响。然而,SB-Li前体的尺寸显示出对偶联效率的最大影响,其中SB-Li前体越大,偶联效率越低。不管WSO的偶联效率如何,WSO都是形成线性三嵌段共聚物的潜在偶联剂。这是因为由WSO制备的含有高SB二嵌段共聚物的SBS三嵌段共聚物比由传统偶联剂制备的具有较少SB二嵌段共聚物的SBS三嵌段共聚物显示出略高的拉伸强度。

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