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硅纳米颗粒作为应变驱动纳米像素的光学打印

Optical Printing of Silicon Nanoparticles as Strain-Driven Nanopixels.

作者信息

Yan Jiahao, Zhao Kaiqing, Wu Tianli, Liu Xinyue, Li Yuchao, Li Baojun

机构信息

Guangdong Provincial Key Laboratory of Nanophotonic Manipulation, Institute of Nanophotonics, Jinan University, Guangzhou 511443, China.

出版信息

ACS Appl Mater Interfaces. 2023 Aug 16;15(32):38682-38692. doi: 10.1021/acsami.3c06391. Epub 2023 Aug 4.

Abstract

Silicon nanoparticles (Si NPs) supporting Mie resonances exhibit vivid structural colors on the subwavelength scale. For future wearable devices, next generation Si-based optical units need to be dynamic and stretchable for display, sensing, or signal processing required by human-computer interaction. Here, by utilizing the distance-sensitive electromagnetic coupling of Mie resonances, we maximize the active tuning effect of Si NP-based structures including dimers, oligomers, and NPs on WS, which we called Si nanopixels. Through the optical tweezers-assisted printing of Si nanopixels, patterns can be formed on arbitrary flexible substrates. The strain-sensitive tuning of scattering spectra indicates their promising application on strain sensing of various stretchable substrates via a simple "spray and test" process. In the case of Si nanopixels on polydimethylsiloxane (PDMS), local strains around 1% can be detected by a scattering measurement. Moreover, we demonstrate that the scattering intensity variation of Si nanopixels printed on wrinkled tungsten disulfide (WS) is pixel-dependent and wavelength-dependent. This property facilitates the application of information encryption, and we demonstrate that three barcodes can be independently encoded into the R, G, and B scattering channels through ternary logic represented by the strain-tuning effects of scattering.

摘要

支持米氏共振的硅纳米颗粒(Si NPs)在亚波长尺度上呈现出鲜艳的结构色。对于未来的可穿戴设备,下一代基于硅的光学单元需要具备动态性和可拉伸性,以满足人机交互所需的显示、传感或信号处理功能。在此,通过利用米氏共振的距离敏感电磁耦合,我们将包括二聚体、寡聚体和纳米颗粒在内的基于Si NP的结构(我们称之为硅纳米像素)在WS上的主动调谐效果最大化。通过光镊辅助印刷硅纳米像素,可以在任意柔性基板上形成图案。散射光谱的应变敏感调谐表明,通过简单的“喷涂和测试”过程,它们在各种可拉伸基板的应变传感方面具有广阔的应用前景。在聚二甲基硅氧烷(PDMS)上的硅纳米像素的情况下,通过散射测量可以检测到约1%的局部应变。此外,我们证明了印刷在皱纹二硫化钨(WS)上的硅纳米像素的散射强度变化与像素和波长有关。这一特性有助于信息加密的应用,并且我们证明了可以通过由散射的应变调谐效应表示的三进制逻辑将三个条形码独立编码到R、G和B散射通道中。

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