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首页> 外文期刊>Polymer Degradation and Stability >Physical properties and biodegradation of poly(butylene adipate) ionomers
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Physical properties and biodegradation of poly(butylene adipate) ionomers

机译:聚己二酸丁二酯离聚物的物理性质和生物降解

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摘要

Rapidly biodegradable and feasible poly(butylene adipate) ionomers (PBAi) were synthesized using dimethyl 5-sulfoisophthalate sodium salt (DMSI) up to 5 mol% of diacid monomer. Spectroscopically determined ionic contents of the polymers corresponded well to the feed compositions. Melt rheology experiments displayed the relaxation of ion clusters in PBA ionomers containing 3―5 mol% DMSI over the temperature range of 150―200℃. The melting point depression in the ionomers was less than 1 K per mol% of DMSI, comparable to the most aliphatic co-polyesters. On the other hand, substantial decrease in enthalpy of fusion was observed at 3―5 mol% of ion content, indicating that crystallization is seriously retarded by the ionic interaction. It was found that PBA ionomers, despite the low molecular weight, exhibited acceptable tensile properties ascribable to chain extension effect due to the ionic interactions. Most importantly, the hydrolytic degradation of the ionomers was drastically accelerated compared to PBA homopolymer because the presence of ionic moieties reduced the crystallinity and allowed easier moisture penetration, and thus improved hydrolytic susceptibility.
机译:使用5-磺基间苯二甲酸二甲酯钠盐(DMSI)合成高达5 mol%的二酸单体,可快速生物降解且可行的聚己二酸丁二酯离聚物(PBAi)。光谱确定的聚合物的离子含量与进料组成非常吻合。熔体流变学实验表明,在150〜200℃的温度范围内,含有3〜5 mol%DMSI的PBA离聚物的离子簇弛豫。与大多数脂族共聚酯相比,离聚物中的熔点降低量每摩尔DMSI小于1K。另一方面,在离子含量的3-5%(摩尔)时,熔融焓显着降低,这表明离子相互作用严重阻碍了结晶。发现尽管分子量低,但PBA离聚物由于离子相互作用而表现出归因于链增长作用的可接受的拉伸性能。最重要的是,与PBA均聚物相比,离聚物的水解降解得到了极大的加速,因为离子部分的存在降低了结晶度,并使水分更易于渗透,从而提高了水解敏感性。

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