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Mechanically Robust Hybrid POSS Thermoplastic Polyurethanes with Enhanced Surface Hydrophobicity

机译:具有增强的表面疏水性的机械坚固的杂化POSS热塑性聚氨酯

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摘要

A series of hybrid thermoplastic polyurethanes (PUs) were synthesized from bi-functional polyhedral oligomeric silsesquioxane (B-POSS) and polycaprolactone (PCL) using 1,6-hexamethylene diisocyanate (HDI) as a coupling agent for the first time. The newly synthesized hybrid materials were fully characterized in terms of structure, morphology, thermal and mechanical performance, as well as their toughening effect toward polyesters. Thermal gravimeter analysis (TGA) and differential scanning calorimetry (DSC) showed enhanced thermal stability by 76 °C higher in decomposition temperature (Td) of the POSS PUs, and 22 °C higher glass transition temperature (Tg) when compared with control PU without POSS. Static contact angle results showed a significant increment of 49.8° and 53.4° for the respective surface hydrophobicity and lipophilicity measurements. More importantly, both storage modulus (G’) and loss modulus (G’’) are improved in the hybrid POSS PUs and these parameters can be further adjusted by varying POSS content in the copolymer. As a biodegradable hybrid filler, the as-synthesized POSS PUs also demonstrated a remarkable effect in toughening commercial polyesters, indicating a simple yet useful strategy in developing high-performance polyester for advanced biomedical applications.
机译:首次使用1,6-六亚甲基二异氰酸酯(HDI)作为偶联剂,由双功能多面体低聚倍半硅氧烷(B-POSS)和聚己内酯(PCL)合成了一系列杂化热塑性聚氨酯(PU)。新合成的杂化材料在结构,形态,热和机械性能以及它们对聚酯的增韧效果方面都得到了充分表征。热重力仪分析(TGA)和差示扫描量热法(DSC)显示,与不带对照的PU相比,POSS PU的分解温度(Td)提高了76°C,热稳定性增强了,玻璃化转变温度(Tg)提高了22°C。 POSS。静态接触角结果表明,对于各自的表面疏水性和亲脂性测量,其显着增加了49.8°和53.4°。更重要的是,在混合POSS PU中,储能模量(G’)和损耗模量(G’)均得到改善,并且可以通过改变共聚物中的POSS含量来进一步调整这些参数。作为可生物降解的杂化填料,合成后的POSS PU在增韧商业聚酯方面也显示出显着效果,这表明在开发用于高级生物医学应用的高性能聚酯时,一种简单而有用的策略。

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