Department of Chemical and Biomolecular Engineering, North Carolina State University, Raleigh, NC, USA.
Department of Applied Physical Sciences, University of North Carolina, Chapel Hill, NC, USA.
Nature. 2024 Jul;631(8020):313-318. doi: 10.1038/s41586-024-07564-0. Epub 2024 Jun 19.
Glassy polymers are generally stiff and strong yet have limited extensibility. By swelling with solvent, glassy polymers can become gels that are soft and weak yet have enhanced extensibility. The marked changes in properties arise from the solvent increasing free volume between chains while weakening polymer-polymer interactions. Here we show that solvating polar polymers with ionic liquids (that is, ionogels) at appropriate concentrations can produce a unique class of materials called glassy gels with desirable properties of both glasses and gels. The ionic liquid increases free volume and therefore extensibility despite the absence of conventional solvent (for example, water). Yet, the ionic liquid forms strong and abundant non-covalent crosslinks between polymer chains to render a stiff, tough, glassy, and homogeneous network (that is, no phase separation), at room temperature. Despite being more than 54 wt% liquid, the glassy gels exhibit enormous fracture strength (42 MPa), toughness (110 MJ m), yield strength (73 MPa) and Young's modulus (1 GPa). These values are similar to those of thermoplastics such as polyethylene, yet unlike thermoplastics, the glassy gels can be deformed up to 670% strain with full and rapid recovery on heating. These transparent materials form by a one-step polymerization and have impressive adhesive, self-healing and shape-memory properties.
玻璃态聚合物通常具有刚性和高强度,但延展性有限。通过溶剂溶胀,玻璃态聚合物可以变成具有柔软和弱强度但具有增强延展性的凝胶。这些性质的显著变化是由于溶剂增加了链之间的自由体积,同时削弱了聚合物-聚合物相互作用。在这里,我们表明,用离子液体(即离子凝胶)溶解极性聚合物,在适当的浓度下,可以产生一类独特的材料,称为玻璃态凝胶,具有玻璃和凝胶的理想性质。尽管没有传统溶剂(例如水),但离子液体增加了自由体积,从而提高了延展性。然而,离子液体在聚合物链之间形成了大量的强非共价交联,从而在室温下形成了坚硬、坚韧、玻璃态和均匀的网络(即没有相分离)。尽管玻璃态凝胶的液体含量超过 54wt%,但其断裂强度(42MPa)、韧性(110MJ/m)、屈服强度(73MPa)和杨氏模量(1GPa)都非常高。这些值与聚乙烯等热塑性塑料相似,但与热塑性塑料不同的是,玻璃态凝胶可以在加热时变形高达 670%的应变,并且可以完全快速恢复。这些透明材料通过一步聚合形成,并具有令人印象深刻的粘附性、自修复和形状记忆性能。