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Elastomeric polyamide biomaterials with stereochemically tuneable mechanical properties and shape memory

机译:弹性聚酰胺生物材料具有立体化学可调的机械性能和形状记忆

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Biocompatible polymers are widely used in tissue engineering and biomedical device applications. However, few biomaterials are suitable for use as long-term implants and these examples usually possess limited property scope, can be difficult to process, and are non-responsive to external stimuli. Here, we report a class of easily processable polyamides with stereocontrolled mechanical properties and high-fidelity shape memory behaviour. We synthesise these materials using the efficient nucleophilic thiol-yne reaction between a dipropiolamide and dithiol to yield an α,β?-?unsaturated carbonyl moiety along the polymer backbone. By rationally exploiting reaction conditions, the alkene stereochemistry is modulated between 35-82% cis content and the stereochemistry dictates the bulk material properties such as tensile strength, modulus, and glass transition. Further access to materials possessing a broader range of thermal and mechanical properties is accomplished by polymerising a variety of commercially available dithiols with the dipropiolamide monomer.
机译:生物相容性聚合物广泛用于组织工程和生物医学装置应用。然而,很少有生物材料适合用作长期植入物,并且这些实施例通常具有有限的性质范围,可能难以处理,并且对外部刺激无响应。在这里,我们报告了一类易于加工的聚酰胺,具有立体控制机械性能和高保真形状记忆行为。我们使用二丙醇酰胺和二硫醇之间的有效亲核硫醇-yne反应合成这些材料,得到沿聚合物主链的α,βα - α - β-α - β - β-·Δ - β-α - α - β-·λ。通过合理利用反应条件,烯烃立体化学在35-82%的顺式含量之间调节,立体化学决定了块状物质性质,例如拉伸强度,模量和玻璃化转变。通过将各种商业上可获得的二甲酰胺单体进行聚合来实现进一步进入具有更广泛的热和机械性能的材料。

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