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用于多光谱应用的超均匀石墨烯图案的液滴笔书写

Droplet-Pen Writing of Ultra-Uniform Graphene Pattern for Multi-Spectral Applications.

作者信息

Liao Qihua, Cheng Huhu, Qu Liangti

机构信息

Key Laboratory of Organic Optoelectronics & Molecular Engineering, Ministry of Education, Department of Chemistry, Tsinghua University, Beijing, 100084, P. R. China.

State Key Laboratory of Tribology in Advanced Equipment (SKLT), Department of Mechanical Engineering, Tsinghua University, Beijing, 100084, P. R. China.

出版信息

Small Methods. 2024 Dec;8(12):e2400384. doi: 10.1002/smtd.202400384. Epub 2024 May 6.

Abstract

Artificial optical patterns bring wide benefits in applications like structural color display, photonic camouflage, and electromagnetic cloak. Their scalable coating on large-scale objects will greatly enrich the multimodal-interactive society. Here, a droplet-pen writing (DPW) method to directly write multi-spectral patterns of thin-film graphene is reported. By amphiphilicity regulations of 2D graphene nanosheets, ultra-uniform and ultrathin films can spontaneously form on droplet caps and pave to the substrate, thus inducing optical interference. This allows the on-surface patterning by pen writing of droplets. Specifically, drop-on-demand thin films are achieved with millimeter lateral size and uniformity up to 97% in subwavelength thickness (<100 nm), corresponding to an aspect ratio of over 30 000. The pixelated thin-film patterns of disks and lines in an 8-inch wafer scale are demonstrated, which enable low-emittance structural color paintings. Furthermore, the applications of these patterns for dual-band camouflage and infrared-to-visible encryption are investigated. This study highlights the potential of 2D material self-assembly in the large-scale preparation and multi-spectral application of thin film-based optical patterns.

摘要

人工光学图案在结构色显示、光子伪装和电磁隐身等应用中带来了广泛的益处。它们在大规模物体上的可扩展涂层将极大地丰富多模态交互社会。在此,报道了一种直接书写薄膜石墨烯多光谱图案的液滴笔书写(DPW)方法。通过二维石墨烯纳米片的两亲性调控,超均匀和超薄的薄膜能够在液滴帽上自发形成并铺展到基底上,从而引发光学干涉。这使得通过液滴笔书写实现表面图案化。具体而言,按需滴铸的薄膜在亚波长厚度(<100 nm)下实现了毫米级横向尺寸和高达97%的均匀性,对应纵横比超过30000。展示了8英寸晶圆尺度上圆盘和线条的像素化薄膜图案,这些图案可实现低发射率的结构色绘画。此外,还研究了这些图案在双波段伪装和红外到可见光加密方面的应用。这项研究突出了二维材料自组装在基于薄膜的光学图案的大规模制备和多光谱应用中的潜力。

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