Yoo Daehan, Johnson Timothy W, Cherukulappurath Sudhir, Norris David J, Oh Sang-Hyun
Department of Electrical and Computer Engineering, University of Minnesota , Minneapolis, Minnesota 55455, United States.
Optical Materials Engineering Laboratory, ETH Zurich , 8092 Zurich, Switzerland.
ACS Nano. 2015 Nov 24;9(11):10647-54. doi: 10.1021/acsnano.5b05279. Epub 2015 Oct 1.
We use template stripping to integrate metallic nanostructures onto flexible, stretchable, and rollable substrates. Using this approach, high-quality patterned metals that are replicated from reusable silicon templates can be directly transferred to polydimethylsiloxane (PDMS) substrates. First we produce stretchable gold nanohole arrays and show that their optical transmission spectra can be modulated by mechanical stretching. Next we fabricate stretchable arrays of gold pyramids and demonstrate a modulation of the wavelength of light resonantly scattered from the tip of the pyramid by stretching the underlying PDMS film. The use of a flexible transfer layer also enables template stripping using a cylindrical roller as a substrate. As an example, we demonstrate roller template stripping of metallic nanoholes, nanodisks, wires, and pyramids onto the cylindrical surface of a glass rod lens. These nonplanar metallic structures produced via template stripping with flexible and stretchable films can facilitate many applications in sensing, display, plasmonics, metasurfaces, and roll-to-roll fabrication.
我们使用模板剥离技术将金属纳米结构集成到柔性、可拉伸和可卷曲的基板上。采用这种方法,从可重复使用的硅模板复制而来的高质量图案化金属可以直接转移到聚二甲基硅氧烷(PDMS)基板上。首先,我们制备了可拉伸的金纳米孔阵列,并表明其光学透射光谱可以通过机械拉伸进行调制。接下来,我们制造了金金字塔的可拉伸阵列,并证明通过拉伸底层的PDMS薄膜,可以调制从金字塔尖端共振散射的光的波长。使用柔性转移层还能使我们以圆柱形滚筒作为基板进行模板剥离。例如,我们展示了将金属纳米孔、纳米盘、金属线和金字塔通过滚筒模板剥离到玻璃棒透镜的圆柱表面上。通过使用柔性和可拉伸薄膜进行模板剥离所制备的这些非平面金属结构,可推动传感、显示、等离子体学、超表面和卷对卷制造等诸多领域的应用。