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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Biobased Multifunctional Macroglycol Containing Smart Thermoplastic Hyperbranched Polyurethane Elastomer with Intrinsic Self-Healing Attribute
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Biobased Multifunctional Macroglycol Containing Smart Thermoplastic Hyperbranched Polyurethane Elastomer with Intrinsic Self-Healing Attribute

机译:含有智能热塑性超支化聚氨酯弹性体的生物化多官能宏观糖,具有内在的自我愈合属性

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摘要

Smart biobased self-healable polymers are.advanced sustainable materials. Thus, a thermoplastic hyperbranched polyurethane (HBPUR) elastomer was synthesized by using a biobased multifunctional macroglycol along with other required components, for the first time. This biobased macroglycol was obtained by stoichiometric controlled esterification reaction of dimer acid with glycerol. Fourier transform infrared, nuclear magnetic resonance spectroscopic, gel permeation chromatography, and X-ray diffraction studies confirmed the physicochemical structure of the synthesized macroglycol and HBPURs. The degree of branching value (0.78-0.91) of HBPURs varies with this macroglycol content. These thermoplastic PUR elastomers exhibited outstanding toughness (205 MJ.m(-3)), unprecedented high elongation at break (2810-3160%), good tensile strength (8.2-9.5 MPa), impact resistance (17.3 kJ/m), scratch resistance (4.0-4.5 kg), durometer hardness (52-60 Shore A), adhesive strength (3.3-6.7 kPa), thermostability (241-249 degrees C), and chemical and UV-resistance. Notably, HBPURs also showed excellent repeatable intrinsic self-healing efficiency (100%) under exposure of microwave (450 IN). Moreover, HBPURs exhibited outstanding thermoresponsive shape recovery (100%) within 50-56 s at 60 degrees C. In addition, HBPURs showed acceptable biodegradation under the exposure of Pseudomonus aeruginosa and Bacillus subtilus bacterial strains. Again, HBPUR demonstrated superior performance over linear analogous PUR. Thus, HBPUR has great potential as a smart sustainable self-healing thermoplastic elastomer for different applications.
机译:智能生物保湿的聚合物是可持续的材料。因此,通过使用生物化的多官能宏观白醇和其他所需的组分首次通过使用生物化的多官能宏观白醇合成热塑性超支化聚氨酯(HBPUR)弹性体。通过与甘油的二聚体酸的化学计量控制的酯化反应得到这种生物化的宏观糖。傅里叶变换红外,核磁共振光谱,凝胶渗透色谱和X射线衍射研究证实了合成的宏观糖和HBPUR的物理化学结构。 HBPURS的分支值(0.78-0.91)的程度随这种宏观白科醇含量而变化。这些热塑性PUR弹性体具有出色的韧性(205mmmm(-3)),断裂处于前所未有的高伸长率(2810-3160%),抗拉强度良好(8.2-9.5MPa),抗冲击性(& 17.3 kJ / m) ,耐刮擦性(4.0-4.5千克),硬度计硬度(52-60岸A),粘合强度(3.3-6.7kPa),热稳定性(241-249℃)和化学和紫外线。值得注意的是,HBPURS在微波暴露(450英寸)下也显示出优异的可重复的内在自愈效率(100%)。此外,HBPURS在60℃下表现出优异的热响应形状恢复(100%)在50-56秒内。此外,HBPURS在铜绿假单胞菌和枯草芽孢杆菌细菌菌株的暴露下显示出可接受的生物降解。同样,HBPUR在线性类似物上表现出优越的性能。因此,HBPUR具有巨大的潜在作为不同应用的智能可持续自愈的热塑性弹性体。

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