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Bio-based, biodegradable and amorphous polyurethanes with shape memory behavior at body temperature

机译:生物基,可生物降解和无定形聚氨酯,体温形状记忆行为

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In this work, a series of bio-based, biodegradable and amorphous shape memory polyurethanes were synthesized by a two-step pre-polymerization process from polylactide (PLA) diol, polycaprolactone (PCL) diol and diphenylmethane diisocyanate-50 (MDI-50). The ratio of PLA diol to PCL diol was adjusted to investigate their thermal and mechanical properties. These bio-based shape memory polyurethanes (bio-PUs) showed a glass transition temperature ( T _(g) ) value in the range of ?10.7–32.5 °C, which can be adjusted to be close to body temperature. The tensile strength and elongation of the bio-PUs could be tuned in the range from 1.7 MPa to 12.9 MPa and from 767.5% to 1345.7%, respectively. Through a series of shape memory tests, these bio-PUs exhibited good shape memory behavior at body temperature. Among them, PU with 2?:?1 as the PLA/PCL ratio showed the best shape recovery behavior with a shape recovery rate higher than 98% and could fully reach the original shape state in 15 s at 37 °C. Therefore, these shape memory bio-PUs are promising for applications in smart biomedical devices.
机译:在这项工作中,通过两步预聚合方法由来自聚乳酸(PLA)二醇,聚己内酯(PCL)二醇和二苯基甲烷二异氰酸酯-50(MDI-50)的两步预聚合方法合成了一系列生物基,可生物降解和无定形的形状记忆聚氨酯(MDI-50) 。调节PLA二醇与PCL二醇的比例,以研究其热和机械性能。这些基于生物的形状记忆聚氨酯(BIO-PU)在α10.7-32.5℃的范围内显示出玻璃化转变温度(T _(g))值,其可以调节以接近体温。生物脓液的拉伸强度和伸长率可以分别在1.7MPa至12.9MPa的范围内,分别为767.5%至1345.7%。通过一系列形状记忆试验,这些生物脓液在体温下表现出良好的形状记忆行为。其中,PU有2?:Δ1,因为PLA / PCL比率显示出具有高于98%的形状回收率的最佳形状恢复行为,并且可以在37°C的15秒内完全达到原始形状状态。因此,这些形状记忆Bio-PU对智能生物医学设备的应用是有前途的。

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