Yang Jun-Yeong, Jung Sunghoon, Byeon Eun-Yeon, Lee Hyun Hwi, Kim Do-Geun, Kim Hyo Jung, Jang Ho Won, Lee Seunghun
Department of Nano-Bio Convergence, Korea Institute of Materials Science, 797 Changwondae-ro, Changwon 51508, Korea.
Department of Organic Material Science and Engineering, Pusan National University, Busan 46241, Korea.
Polymers (Basel). 2021 Jun 10;13(12):1932. doi: 10.3390/polym13121932.
This work reports the self-organization of dimple nanostructures on a polyethylene naphthalate (PEN) surface where an Ar ion beam was irradiated at an ion energy of 600 eV. The peak-to-peak roughness and diameter of dimple nanostructures were 29.153.4 nm and 63.477.6 nm, respectively. The electron energy loss spectrum at the peaks and troughs of dimples showed similar C=C, C=O, and O=CH bonding statuses. In addition, wide-angle X-ray scattering showed that Ar ion beam irradiation did not induce crystallization of the PEN surface. That meant that the self-organization on the PEN surface could be due to the ion-induced surface instability of the amorphous layer and not due to the partial crystallinity differences of the peaks and valleys. A nonlinear continuum model described surface instability due to Ar ion-induced sputtering. The Kuramoto-Sivashinsky model reproduced the dimple morphologies numerically, which was similar to the experimentally observed dimple patterns. This preliminary validation showed the possibility that the continuum equation used for metal and semiconductor surfaces could be applied to polymer surfaces where ion beam sputtering occurred.
这项工作报道了在聚萘二甲酸乙二醇酯(PEN)表面自组织形成的酒窝状纳米结构,其中以600 eV的离子能量照射了氩离子束。酒窝状纳米结构的峰-峰粗糙度和直径分别为29.153.4 nm和63.477.6 nm。酒窝状结构的峰谷处的电子能量损失谱显示出相似的C = C、C = O和O = CH键合状态。此外,广角X射线散射表明,氩离子束辐照不会诱导PEN表面结晶。这意味着PEN表面的自组织可能是由于离子诱导的非晶层表面不稳定性,而不是由于峰谷处的部分结晶度差异。一个非线性连续体模型描述了由于氩离子诱导溅射引起的表面不稳定性。Kuramoto-Sivashinsky模型通过数值模拟再现了酒窝状形态,这与实验观察到的酒窝图案相似。这一初步验证表明,用于金属和半导体表面的连续体方程有可能应用于发生离子束溅射的聚合物表面。