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Super-tough hydrogels from shape-memory polyurethane with wide-adjustable mechanical properties

机译:形状记忆聚氨酯制成的超韧性水凝胶,具有可调节的机械性能

摘要

Recoverable hydrogels with high strength and toughness have been fabricated from hydrophilic and thermoplastic polyurethane (HTPU), which chains consist of hydrophilic polyethylene glycol (PEG) segment of high crystallinity and hydrophobic segment with strong hydrogen-bonding groups. This HTPU absorbed high amount of water, during which the PEG crystals swollen and dissolved, while the hydrophobic segments still held the adjacent chains together, forming a stable hydrogel. Even at equilibrium swelling state (89 wt% water), the HTPU hydrogel exhibited high modulus (0.4 MPa), high strength (2.6 MPa), and large strain at break (~500%). The effect of water content on the tensile properties of HTPU hydrogels was carefully studied at different levels of swelling. Interestingly, the hydrogels demonstrated a transition from a typical tough plastic to a tough elastomer when the water content reached 35 wt% of the hydrogel, with breaking strength of 10.0 MPa and fracture energy of 59.7 MJ/m3 at maximum strain over 1600%. The results from differential scanning calorimetry, Fourier transform infrared spectroscopy, and microscope measurements showed that the wide adjustability of this HTPU mechanical property was a result of the changes in its crystallinity, hydrogen-bonding, and hydrophobic association. Furthermore, the shape-memory performance of the HTPU was studied with heat and water stimuli and found faster at heating to 70 °C than that by immersion in water: 10 s versus 10 min. This study may widen the application of HTPU biodegradable polymers and provide new frontiers for the design of tough hydrogels by network structure control.
机译:具有高强度和韧性的可回收水凝胶是由亲水性和热塑性聚氨酯(HTPU)制成的,其链由高结晶度的亲水性聚乙二醇(PEG)段和具有强氢键基团的疏水性段组成。该HTPU吸收了大量水,在此期间,PEG晶体溶胀并溶解,而疏水链段仍将相邻的链保持在一起,形成了稳定的水凝胶。即使在平衡溶胀状态(89 wt%的水)下,HTPU水凝胶仍显示出高模量(0.4 MPa),高强度(2.6 MPa)和大的断裂应变(〜500%)。在不同的溶胀度下,仔细研究了水含量对HTPU水凝胶拉伸性能的影响。有趣的是,当水含量达到水凝胶的35 wt%时,水凝胶表现出从典型的坚硬塑料到坚韧的弹性体的转变,在最大应变超过1600%时,其断裂强度为10.0 MPa,断裂能为59.7 MJ / m3。差示扫描量热法,傅立叶变换红外光谱法和显微镜测量的结果表明,该HTPU机械性能的广泛可调节性是其结晶度,氢键和疏水缔合变化的结果。此外,通过加热和水刺激研究了HTPU的形状记忆性能,发现加热到70°C时其速度比浸入水中的快:10秒对10分钟。这项研究可能会拓宽HTPU可生物降解聚合物的应用范围,并为通过网络结构控制设计坚韧水凝胶提供新的前沿领域。

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