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Nano-embossed structure on polypropylene induced by low energy Ar ion beam irradiation

机译:低能氩离子束辐照在聚丙烯上的纳米压花结构

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The surface morphology evolution of polypropylene (PP) irradiated with an Ar ion beam was explored using a hybrid ion beam system. PP formed the emboss-like nanostructure of ~ 50 nm induced by the Ar ion beam treatment for shorter ion beam treatment times, while the emboss-like structure was transited into a 3-D long nanofiber-like nanostructure for longer treatment times. The Fourier transform infrared spectra revealed that the polymer chain cross-linking increased with increasing ion treatment time, while the Raman analysis showed that the conducting amorphous carbon increased on the surface of PP. The surface hardness and plane strain modulus of the PP decreased from 0.11 to 0.07 GPa and from 1.75 to 1.26 GPa, respectively, with respect to the Ar ion beam treatment time due to the surface nanostructures formed by the Ar ion beam.
机译:使用混合离子束系统探索了用Ar离子束辐照的聚丙烯(PP)的表面形貌演变。 PP形成Ar离子束处理诱导的〜50 nm的浮雕状纳米结构,从而缩短了离子束处理时间,而PP形成了3D长的纳米纤维状纳米结构,从而延长了处理时间。傅立叶变换红外光谱表明,随着离子处理时间的增加,聚合物链的交联增加,而拉曼分析表明,PP表面的导电无定形碳增加。由于由Ar离子束形成的表面纳米结构,相对于Ar离子束处理时间,PP的表面硬度和平面应变模量分别从0.11降低至0.07GPa和从1.75降低至1.26GPa。

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