State Key Laboratory of Polymer Materials Engineering, Polymer Research Institute of Sichuan University , Chengdu 610065, China.
ACS Appl Mater Interfaces. 2017 Sep 27;9(38):33176-33190. doi: 10.1021/acsami.7b11399. Epub 2017 Sep 15.
On the basis of the industrialized graphene nanosheets (GNs) product, we synthesized monomer casting nylon-6 (MC PA6)/GN-3-aminopropyl-terminated poly(dimethylsiloxane) (APDMS) nanocomposite in situ through the anchoring effect of APDMS onto the GN surface. APDMS/PA6 molecules were confirmed to intercalate into the GN layers by the formation of strong interfacial interactions. The intercalation ratio and the average layer thickness of the grafted GN sample decreased in the presence of APDMS. Moreover, for MC PA6/GN-APDMS nanocomposite, GN-APDMS was uniformly distributed in the matrix and no phase separation was observed. The size of spherical APDMS particles was obviously reduced compared with that of MC PA6/APDMS composite, revealing a strong interaction between APDMS and GN and the enhancement of compatibility in the composite system. Compared with neat MC PA6, the addition of GN-APDMS resulted in 12% increase in the tensile strength and 37% increase in the impact strength; meanwhile, increase in both the storage modulus (E') and the glass transition temperature (T) indicated synergistic reinforcing and toughening effect of GN-APDMS on MC PA6. Furthermore, over 81 and 48% reduction in the friction coefficient and the specific wear rate, respectively, was achieved for the nanocomposite, and the worn surface displayed flat and smooth features with a uniform depth distribution, a low annealing effect, and a reduced friction heat, further confirming the synergistic friction-reducing effect of GN-APDMS on MC PA6.
基于工业化石墨烯纳米片(GNs)产品,我们通过 APDMS 与 GN 表面的锚固作用,原位合成了单体浇铸尼龙-6(MC PA6)/GN-3-氨丙基封端聚二甲基硅氧烷(APDMS)纳米复合材料。APDMS/PA6 分子被证实通过形成强界面相互作用而插入 GN 层中。存在 APDMS 时,插层比和接枝 GN 样品的平均层厚减小。此外,对于 MC PA6/GN-APDMS 纳米复合材料,GN-APDMS 在基体中均匀分布,没有观察到相分离。与 MC PA6/APDMS 复合材料相比,球形 APDMS 颗粒的尺寸明显减小,表明 APDMS 和 GN 之间存在强烈相互作用,复合材料体系的相容性得到增强。与纯 MC PA6 相比,添加 GN-APDMS 可使拉伸强度提高 12%,冲击强度提高 37%;同时,储能模量(E')和玻璃化转变温度(T)的增加表明 GN-APDMS 对 MC PA6 具有协同增强增韧作用。此外,纳米复合材料的摩擦系数和比磨损率分别降低了 81%和 48%,磨损表面显示出平坦光滑的特征,深度分布均匀,退火效应低,摩擦热减少,进一步证实了 GN-APDMS 对 MC PA6 的协同减摩效果。