Choi Eun-Yeob, Kim Kiho, Kim Chang-Keun, Kang Eunah
School of Chemical Engineering and Material Science, Chung-Ang University, 221 Heukseok-Dong, Dongjak-Gu, Seoul, Korea.
Sci Rep. 2016 Nov 14;6:37010. doi: 10.1038/srep37010.
Nanodiamond (ND), an emerging new carbon material, was exploited to reinforce nylon 6,6 (PA66) polymer composites. Surface modified nanodiamonds with acyl chloride end groups were employed to chemically graft into PA66, enhancing the interfacial adhesion and thus the mechanical properties. The ND grafted PA66 (PA66-g-ND) reinforced PA66 composite prepared by in situ reactive extrusion exhibited increased tensile strength and modulus. The tensile strength and modulus of PA66/3 wt.% PA66-g-ND composites were enhanced by 11.6 and 20.8%, respectively when compared to those of the bare PA66 matrix. Even the PA66/pristine ND composites exhibited enhanced mechanical properties. The PA66-g-ND and the homogeneously dispersed PA66-g-ND in PA66 matrix were examined using X-ray photoelectron spectroscopy, thermogravimetric analysis, scanning electron microscopy and transmission electron microscopy techniques. The mechanical properties and thermal conductivities of the nanodiamond incorporated PA66 composites were also explored. The enhanced mechanical properties and thermal conductivities of the PA66-g-ND/PA66 composites make them potential materials for new applications as functional engineered thermoplastics.
纳米金刚石(ND)作为一种新兴的新型碳材料,被用于增强尼龙6,6(PA66)聚合物复合材料。采用具有酰氯端基的表面改性纳米金刚石化学接枝到PA66中,增强界面附着力,从而提高力学性能。通过原位反应挤出制备的ND接枝PA66(PA66-g-ND)增强PA66复合材料表现出拉伸强度和模量的提高。与纯PA66基体相比,PA66/3 wt.% PA66-g-ND复合材料的拉伸强度和模量分别提高了11.6%和20.8%。即使是PA66/原始ND复合材料也表现出增强的力学性能。使用X射线光电子能谱、热重分析、扫描电子显微镜和透射电子显微镜技术对PA66-g-ND以及PA66基体中均匀分散的PA66-g-ND进行了研究。还探讨了纳米金刚石增强PA66复合材料的力学性能和热导率。PA66-g-ND/PA66复合材料增强的力学性能和热导率使其成为作为功能性工程热塑性塑料的新应用的潜在材料。