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Bioinspired Design of Strong, Tough, and Thermally Stable Polymeric Materials via Nanoconfinement

机译:通过纳米序列的强,坚韧和热稳定的聚合物材料的Bioinspired设计

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摘要

The combination of high strength, great toughness, and high heat resistance for polymeric materials is a vital factor for their practical applications. Unfortunately, until now it has remained a major challenge to achieve this performance portfolio because the mechanisms of strength and toughness are mutually exclusive. In the natural world, spider silk features the combination of high strength, great toughness, and excellent thermal stability, which are governed by the nanoconfinement of hydrogen-bonded beta-sheets. Here, we report a facile bioinspired methodology for fabricating advanced polymer composite films with a high tensile strength of 152.8 MPa, a high stiffness of 4.35 GPa, and a tensile toughness of 30.3 MJ/m(3) in addition to high thermal stability (69 degrees C higher than that of the polymer matrix) only by adding 2.0 wt % of artificial beta-sheets. The mechanical and thermostable performance portfolio is superior to that of its counterparts developed to date because of the nanoconfinement and hydrogen-bond cross-linking effects of artificial beta-sheets. Our study offers a facile biomimetic strategy for the design of integrated mechanically robust and thermostable polymer materials, which hold promise for many applications in electrical devices and tissue engineering fields.
机译:高强度,韧性和高耐热性的聚合物材料的组合是其实际应用的重要因素。不幸的是,直到现在,它仍然是实现这一表现组合的重大挑战,因为力量和韧性的机制是相互排斥的。在自然界中,蜘蛛丝具有高强度,韧性和优异的热稳定性的组合,这些热稳定性由氢键β-片的纳米纯净来控制。在这里,我们报告了一种用于制造具有152.8MPa的高抗拉强度,高4.35GPa的高刚度,以及30.3mJ / m(3)的高刚度(69)的拉伸韧性(69仅通过加入2.0wt%的人工β-片材高于聚合物基质的C.由于人工β-片材的纳米罚统纯净和氢键交联效果,机械和恒温性能产品组合优于开发到迄今为止的对应物。我们的研究提供了一种适用于集成机械稳健和热稳定的聚合物材料设计的仿生策略,这对电气设备和组织工程领域的许多应用具有承担许多应用。

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