Shin Se-Ra, Lee Dai-Soo
Research Institute, Jungwoo Fine Co., Ltd., #63-8, Seogam-ro 1-gil, Iksan-si 54586, Republic of Korea.
C & S Partner, Hanam Technovalley U1 Center, Hanam-si 12982, Republic of Korea.
Polymers (Basel). 2024 Dec 20;16(24):3571. doi: 10.3390/polym16243571.
A fully bio-based polyester polyol based on isosorbide (ISB) and dimer fatty acid (DA) was synthesized through esterification. An ISB-based polyester polyol (DIS) was developed to synthesize a bio-based polyurethane elastomer (PUE) with enhanced mechanical and self-healing properties. The rigid bicyclic structure of ISB improved tensile properties, while the urethane bonds formed between the hydroxyl groups in ISB and isocyanate exhibited reversible characteristics at elevated temperatures, significantly enhancing the self-healing performance of DIS-based PUE compared to the control PUE (self-healing efficiency: 98% for DIS-based PUE vs. 65% for control PUE). The dynamic mechanical and rheological properties of DIS-based PUE were investigated to confirm their relationship with self-healing performance. The DIS-based PUE, featuring reversible urethane bonds, demonstrated rapid stress relaxation and maintained constant normal stress under external stimuli, contributing to its improved self-healing capabilities. Thus, ISB can be regarded as a promising bio-resource for synthesizing bio-based polyester polyols and, consequently, PUE with superior mechanical and self-healing properties.
通过酯化反应合成了一种基于异山梨醇(ISB)和二聚脂肪酸(DA)的全生物基聚酯多元醇。开发了一种基于ISB的聚酯多元醇(DIS),以合成具有增强机械性能和自愈性能的生物基聚氨酯弹性体(PUE)。ISB的刚性双环结构改善了拉伸性能,而ISB中的羟基与异氰酸酯之间形成的氨基甲酸酯键在高温下表现出可逆特性,与对照PUE相比,显著提高了基于DIS的PUE的自愈性能(自愈效率:基于DIS的PUE为98%,对照PUE为65%)。研究了基于DIS的PUE的动态力学和流变性能,以确认它们与自愈性能的关系。基于DIS的PUE具有可逆的氨基甲酸酯键,在外部刺激下表现出快速的应力松弛并保持恒定的法向应力,这有助于其提高自愈能力。因此,ISB可被视为一种有前景的生物资源,用于合成生物基聚酯多元醇,进而合成具有优异机械性能和自愈性能的PUE。