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Instant tough bonding of hydrogels for soft machines and electronics

机译:立即将软凝胶和电子产品的水凝胶牢固粘合

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Introducing methods for instant tough bonding between hydrogels and antagonistic materials—from soft to hard—allows us to demonstrate elastic yet tough biomimetic devices and machines with a high level of complexity. Tough hydrogels strongly attach, within seconds, to plastics, elastomers, leather, bone, and metals, reaching unprecedented interfacial toughness exceeding 2000 J/m2. Healing of severed ionic hydrogel conductors becomes feasible and restores function instantly. Soft, transparent multilayered hybrids of elastomers and ionic hydrogels endure biaxial strain with more than 2000% increase in area, facilitating soft transducers, generators, and adaptive lenses. We demonstrate soft electronic devices, from stretchable batteries, self-powered compliant circuits, and autonomous electronic skin for triggered drug delivery. Our approach is applicable in rapid prototyping and in delicate environments inaccessible for extended curing and cross-linking.
机译:引入了在水凝胶和拮抗材料之间(从软到硬)进行即时强韧结合的方法,使我们能够展示出弹性却强韧的仿生设备和具有高度复杂性的机器。坚韧的水凝胶可在几秒钟内牢固地附着在塑料,弹性体,皮革,骨头和金属上,达到前所未有的界面韧性,超过2000 J / m 2 。切断的离子水凝胶导体的修复变得可行,并立即恢复功能。弹性体和离子水凝胶的柔软,透明的多层杂化物可承受双轴应变,且面积增加了2000%以上,这为软换能器,发生器和自适应透镜提供了便利。我们演示了软电子设备,包括可伸缩电池,自供电顺应电路和用于触发药物输送的自主电子皮肤。我们的方法适用于快速成型和无法扩展固化和交联的精密环境。

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