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Plasmonic Color Laser Printing inside Transparent Gold Nanodisk-Embedded Poly(dimethylsiloxane) Matrices

机译:透明金纳米盘嵌入式聚二甲基硅氧烷基质内部的等离子彩色激光印刷

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摘要

Plasmonic color generation from metal nanostructures has attracted intensive attention because of their excellence in achieving high spatial resolution, strong color contrast, and long-term durability. The limited area of plasmonic patterns anchored on substrates and produced by current top-down methods, however, severely restricts the advanced developments and potential applications in structural color display. Herein a robust method for realizing the laser printing of plasmonic colors inside transparent gold nanodisk-embedded poly(dimethylsiloxane) matrices is presented. It is found that various colors can not only be easily generated by embedding gold nanodisks of different sizes, but also finely varied by adjusting the laser pulse intensity during printing. It is further demonstrated that multiple color layers can be laser-printed at different depths. Stereoscopic images in the 3D matrices are laser-printed with sizes as large as 12 x 15 mm(2) and a resolution of 4600 dots per inch.
机译:由于金属纳米结构在实现高空间分辨率,强大的颜色对比度和长期耐用性方面的卓越表现,因此从金属纳米结构产生等离子颜色引起了广泛的关注。然而,通过目前的自上而下的方法,锚固在基板上并产生的等离激元图案的有限区域严重限制了结构彩色显示器的先进发展和潜在应用。在此,提出了一种鲁棒的方法,用于在嵌入透明金纳米盘的聚(二甲基硅氧烷)基质内实现等离激元颜色的激光印刷。已经发现,不仅可以通过嵌入不同尺寸的金纳米盘容易地产生各种颜色,而且可以通过在打印期间调节激光脉冲强度来细微地改变各种颜色。进一步证明,可以在不同的深度上激光印刷多个颜色层。激光打印3D矩阵中的立体图像,其尺寸最大为12 x 15 mm(2),分辨率为每英寸4600点。

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