论文标题

用于全彩色无墨印刷的结构颜色的高速激光写作

High-speed laser writing of structural colors for full-color inkless printing

论文作者

Geng, Jiao, Xu, Liye, Yan, Wei, Shi, Liping, Qiu, Min

论文摘要

同时实现宽广的范围,高分辨率,高速,而低成本的生产性,长期稳定性和观看角度独立性,以实用应用,这是一个巨大的挑战。常规的纳米制作技术无法符合低成本,大规模和灵活制造中的需求。超短激光器的处理可以达到极高的吞吐量,而狭窄的范围为15%SRGB或依赖角度的颜色。在这里,我们演示了超快激光生产的超薄混合膜上的多合一解决方案,该结构颜色包括在金属锡层上涂在金属锡层上的吸收性tialn层。在脉冲激光照射下,Tialn-Tin杂交膜的吸收行为是由最上方的光热诱导的氧化量身定制的。氧化膜表现出双共振吸收,这归因于氧化物 - tialn界面和Tialn-Tin界面处的非平凡相移。通过改变累积的激光频率以调节氧化深度,可以获得前所未有的90%SRGB的大型范围。我们高度可重现的打印技术表现出对角度不敏感的颜色,当观看角度从6变为60时,色调的变化<0.14pi。全彩色打印速度达到1.4 cm2/s,最高的打印分辨率超过25000 dpi。激光打印的颜色的耐用性通过牢牢检查确认,包括盐雾,双85,浅漂白和粘附测试。这些功能使我们的技术对高通量工业应用具有竞争力。

It is a formidable challenge to simultaneously achieve wide gamut, high resolution, high-speed while low-cost manufacturability, long-term stability, and viewing-angle independence in structural colors for practical applications. The conventional nanofabrication techniques fail to match the requirement in low-cost, large-scale and flexible manufacturing. Processing by ultrashort lasers can achieve extremely high throughput while suffering from a narrow gamut of 15% sRGB or angle-dependent colors. Here, we demonstrate an all-in-one solution for ultrafast laser-produced structural colors on ultrathin hybrid films that comprise an absorbent TiAlN layer coating on a metallic TiN layer. Under pulsed laser irradiation, the absorption behaviors of the TiAlN-TiN hybrid films are tailored by photothermal-induced oxidation on the topmost TiAlN. The oxidized films exhibit double-resonance absorption, which is attributed to the non-trivial phase shifts both at the oxide-TiAlN interface, and at the TiAlN-TiN interface. By varying the accumulated laser fluence to modulate the oxidation depth, an unprecedented large gamut of 90% sRGB is obtained. Our highly reproducible printing technique manifests angle-insensitive colors the variation of Hue is <0.14pi when viewing angles changing from 6 to 60. The full-color printing speed reaches to 1.4 cm2/s and the highest printing resolution exceeds 25000 dpi. The durability of the laser-printed colors is confirmed by fastness examination, including salt fog, double-85, light bleaching, and adhesion tests. These features render our technique to be competitive for high-throughput industrial applications.

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