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首页> 外文期刊>Advanced Functional Materials >Encoding and Decoding of Invisible Complex Information in a Dual-Response Bilayer Photonic Crystal with Tunable Wettability
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Encoding and Decoding of Invisible Complex Information in a Dual-Response Bilayer Photonic Crystal with Tunable Wettability

机译:具有可调可湿性的双响应双层光子晶体中不可见复杂信息的编码和解码

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摘要

Combining responsive colloidal photonic crystals into invisible wettability patterns is important in steganography and watermarking for information encoding and decoding. Using a bilayer photonic crystal as a regionally functionalized porous carrier, a dual-responsive surface with tunable wettability, reversible switching between wetting and no wetting, and responsivity to pressure and solvents are reported. The mechanism of the design involves reversible switching of micropore shapes and optical diffraction in the fabricated periodic nanostructures, and uses the infiltration and capillary evaporation of fluids to realize the spectral diversity of reflectance. It generates different invisible wettability patterns that are regulated by induced pressure and the Donnan equilibrium osmotic pressure. Immersion of the sample in water induces the varying degrees of infiltration and immediately displays multiple colors. It enables instantaneously transparentizing the full infiltration parts of the top layer and simultaneously releasing the reflected light of the corresponding bottom layer. Moreover, those invisible patterns can be reset by wiping with ethanol. Multiple ways to encode and reveal invisible complex information can easily be realized due to these characteristics. This work opens a new avenue for encoding complex information in a single material platform and extends the design approach of invisible patterns for information coding.
机译:将响应性胶体光子晶体结合到不可见的可湿性模式中对于信息编码和解码的隐写术和水印术很重要。使用双层光子晶体作为区域功能化的多孔载体,报道了具有可调的润湿性,在润湿与不润湿之间可逆转换以及对压力和溶剂的响应性的双响应表面。设计的机制包括在制造的周期性纳米结构中微孔形状的可逆转换和光学衍射,并利用流体的渗透和毛细管蒸发来实现反射光谱的多样性。它产生了不同的不可见的可湿性模式,这些模式由感应压力和Donnan平衡渗透压调节。样品浸入水中会引起不同程度的渗透,并立即显示多种颜色。它能够瞬间使顶层的全部渗透部分透明化,并同时释放相应底层的反射光。此外,可以通过用乙醇擦拭来重置那些不可见的图案。由于这些特性,可以轻松实现多种编码和显示不可见的复杂信息的方法。这项工作为在单一材料平台上对复杂信息进行编码开辟了一条新途径,并扩展了用于信息编码的不可见模式的设计方法。

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