Synthesis of Biomass-Based Linear Aliphatic Polyesters Based on Sebacic Acid and 1,18-Octadecanedioic Acid and Their Thermal Properties and Odd-Even Effect.

IF 4.2 3区 化学 Q2 POLYMER SCIENCE
Joshua Wen Jun Loh, Nam-Hai Chua, Atsushi Goto
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引用次数: 0

Abstract

A series of biomass-based linear aliphatic polyesters are synthesized by combining sebacic acid (SA) (C10 diacid) and 1,18-octadecanedioic acid (OA) (C18 diacid) with a series of diols with varied alkyl chain lengths (C2 to C10 diols). SA and OA are obtainable from castor oil and palm oil, respectively. The reaction extent (polymerization extent) is high (≥96%) in all cases, and the number-average molecular weight (Mn) is 10 000-43 000 g mol-1 after purification. A possible limitation of currently available biomass-derived polyesters is their relatively low melting temperatures (Tm). The polyesters synthesized using OA with a long alkyl chain (C18 chain) in the present work exhibit relatively high Tm values of 78-93 °C, which are rather close to that (105-118 °C) of low-density polyethylene (LDPE), and may serve as biomass-based alternatives to LDPE with respect to thermal properties. Scientifically notably, an odd-even effect is observed in the Tm values. Polyesters with an even total-number of carbon atoms in the repeating unit have higher Tm values than their odd total-number counterparts likely due to their different orientations of dipoles of the polar ester groups along the backbone chain.

癸二酸和1,18-十八烯二酸基生物质直线型脂肪族聚酯的合成及其热性能和奇偶效应
以己二酸(SA) (C10二酸)和1,18十八烯二酸(OA) (C18二酸)与一系列不同烷基链长的二醇(C2 ~ C10二醇)为原料,合成了一系列生物质基线性脂肪族聚酯。SA和OA分别可从蓖麻油和棕榈油中获得。反应度(聚合度)均较高(≥96%),纯化后的数均分子量(Mn)为10 000 ~ 43 000 g mol-1。目前可用的生物质衍生聚酯的一个可能的限制是它们相对较低的熔融温度(Tm)。本研究中使用长烷基链(C18链)的OA合成的聚酯具有78-93°C的相对较高的Tm值,与低密度聚乙烯(LDPE)的Tm值(105-118°C)相当接近,并且在热性能方面可以作为LDPE的生物质替代品。在科学上值得注意的是,在Tm值中观察到奇偶效应。重复单元中碳原子总数为偶数的聚酯具有更高的Tm值,这可能是由于它们的极性酯基沿主链的偶极取向不同。
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来源期刊
Macromolecular Rapid Communications
Macromolecular Rapid Communications 工程技术-高分子科学
CiteScore
7.70
自引率
6.50%
发文量
477
审稿时长
1.4 months
期刊介绍: Macromolecular Rapid Communications publishes original research in polymer science, ranging from chemistry and physics of polymers to polymers in materials science and life sciences.
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