Li Qiang, Ji Myung Gi, Chapagain Ashish, Cho In Ho, Kim Jaeyoun
Department of Electrical & Computer Engineering, Iowa State University, Ames, IA 50011, USA.
Department of Civil, Construction & Environmental Engineering, Iowa State University, Ames, IA 50011, USA.
Micromachines (Basel). 2022 Dec 9;13(12):2183. doi: 10.3390/mi13122183.
Nanolenses are gaining importance in nanotechnology, but their challenging fabrication is thwarting their wider adoption. Of particular challenge is facile control of the lens' curvature. In this work, we demonstrate a new nanoimprinting technique capable of realizing polymeric nanolenses in which the nanolens' curvature is optically controlled by the ultraviolet (UV) dose at the pre-curing step. Our results reveal a regime in which the nanolens' height changes linearly with the UV dose. Computational modeling further uncovers that the polymer undergoes highly nonlinear dynamics during the UV-controlled nanoimprinting process. Both the technique and the process model will greatly advance nanoscale science and manufacturing technology.
纳米透镜在纳米技术中越来越重要,但其具有挑战性的制造过程阻碍了它们的更广泛应用。特别具有挑战性的是对透镜曲率的轻松控制。在这项工作中,我们展示了一种新的纳米压印技术,该技术能够实现聚合物纳米透镜,其中纳米透镜的曲率在预固化步骤中通过紫外线(UV)剂量进行光学控制。我们的结果揭示了一种纳米透镜高度随紫外线剂量线性变化的状态。计算模型进一步揭示,聚合物在紫外线控制的纳米压印过程中经历高度非线性动力学。该技术和过程模型都将极大地推动纳米科学和制造技术的发展。