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在云母上使用铝和铜外延膜的柔性等离子体激元学。

Flexible Plasmonics Using Aluminum and Copper Epitaxial Films on Mica.

作者信息

Quynh Le Thi, Cheng Chang-Wei, Huang Chiao-Tzu, Raja Soniya Suganthi, Mishra Ragini, Yu Meng-Ju, Lu Yu-Jung, Gwo Shangjr

机构信息

Department of Physics, National Tsing-Hua University, Hsinchu 30013, Taiwan.

Department of Electrophysics, National Yang-Ming Chaio-Tung University, Hsinchu 30010, Taiwan.

出版信息

ACS Nano. 2022 Apr 26;16(4):5975-5983. doi: 10.1021/acsnano.1c11191. Epub 2022 Mar 25.

DOI:10.1021/acsnano.1c11191
PMID:35333048
Abstract

We demonstrate here the growth of aluminum (Al), copper (Cu), gold (Au), and silver (Ag) epitaxial films on two-dimensional, layered muscovite mica (Mica) substrates via van der Waals (vdW) heteroepitaxy with controllable film thicknesses from a few to hundreds of nanometers. In this approach, the mica thin sheet acts as a flexible and transparent substrate for vdW heteroepitaxy, which allows for large-area formation of atomically smooth, single-crystalline, and ultrathin plasmonic metals without the issue of film dewetting. The high-quality plasmonic metal films grown on mica enable us to design and fabricate well-controlled Al and Cu plasmonic nanostructures with tunable surface plasmon resonances ranging from visible to the near-infrared spectral region. Using these films, two kinds of plasmonic device applications are reported, including (1) plasmonic sensors with high effective index sensitivities based on surface plasmon interferometers fabricated on the Al/Mica film and (2) Cu/Mica nanoslit arrays for plasmonic color filters in the visible and near-infrared regions. Furthermore, we show that the responses of plasmonic nanostructures fabricated on the Mica substrates remain unaltered under large substrate bending conditions. Therefore, the metal-on-mica vdW heteroepitaxy platform is suitable for flexible plasmonics based on their bendable properties.

摘要

我们在此展示了通过范德华(vdW)异质外延在二维层状白云母(云母)衬底上生长铝(Al)、铜(Cu)、金(Au)和银(Ag)外延膜,薄膜厚度可控制在几纳米到数百纳米之间。在这种方法中,云母薄片充当vdW异质外延的柔性透明衬底,这使得能够大面积形成原子级光滑、单晶且超薄的等离子体金属,而不存在薄膜去湿问题。在云母上生长的高质量等离子体金属薄膜使我们能够设计和制造具有可控表面等离子体共振的Al和Cu等离子体纳米结构,其范围从可见光到近红外光谱区域。利用这些薄膜,报道了两种等离子体器件应用,包括(1)基于在Al/云母薄膜上制造的表面等离子体干涉仪的具有高有效折射率灵敏度的等离子体传感器,以及(2)用于可见光和近红外区域的等离子体彩色滤光片的Cu/云母纳米狭缝阵列。此外,我们表明在大衬底弯曲条件下,在云母衬底上制造的等离子体纳米结构的响应保持不变。因此,基于云母的金属vdW异质外延平台因其可弯曲特性适用于柔性等离子体学。

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