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A simple route to enhance the interface between graphite oxide nanoplatelets and a semi-crystalline polymer for stress transfer

机译:增强氧化石墨纳米片和半结晶聚合物之间应力传递的简单途径

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摘要

This report shows that thermal treatment is a simple and effective approach to create a polymer crystalline layer on the surface of graphite oxide nanoplatelets (GONPs) in polycaprolactone (PCL) melts. It was found that the crystallization temperature of the PCL increased significantly by nearly 9 °C with the incorporation of 2 wt% GONPs. As the composite melts isothermally crystallized at the temperature that was 14 °C higher than the crystallization temperature, the polymer crystalline layer was optimized on the surface of the GONPs. At 2 wt% GONPs, the Young's modulus of the composite was nearly 1.5 times greater than for the pure PCL. In comparison with untreated composites, the improvement in the Young's modulus of treated composites nearly doubled. It confirmed that a non-covalent interface for stress transfer can be enhanced by the formation of the polymer crystalline layer bridging the GONPs and the polymer matrix.
机译:该报告显示,热处理是在聚己内酯(PCL)熔体中的氧化石墨纳米片(GONP)表面上形成聚合物晶体层的简单有效方法。发现通过掺入2重量%的GONP,PCL的结晶温度显着提高了近9℃。当复合材料在比结晶温度高14°C的温度下等温结晶时,聚合物结晶层在GONP的表面上得到优化。在2 wt%的GONP下,复合材料的杨氏模量几乎是纯PCL的1.5倍。与未处理的复合材料相比,处理后的复合材料的杨氏模量提高了近一倍。证实了可以通过桥接GONP和聚合物基质的聚合物晶体层的形成来增强用于应力转移的非共价界面。

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