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首页> 外文期刊>Advanced Functional Materials >Designing Multicolored Photonic Micropatterns through the Regioselective Thermal Compression of Inverse Opals
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Designing Multicolored Photonic Micropatterns through the Regioselective Thermal Compression of Inverse Opals

机译:通过反蛋白石的区域选择性热压缩设计彩色光子微图案。

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摘要

Colloidal assemblies develop pronounced structural colors due to the selective diffraction of light. Micropatterns with multiple structural colors are appealing for the use in a variety of photonic applications. Here, a lithographic approach is reported, which provides a high level of control over the size, shape, and color of a micropattern using the anisotropic shrinkage of inverse opals made of a negative photoresist heated to high temperatures. Shrinkage occurs uniformly across the thickness of the film, leading to a blueshift in the structural color while maintaining a high reflectivity across the full visible spectrum. The rate of shrinkage is determined by the annealing temperature and the photoresist crosslinking density. The rate can, therefore, be spatially modulated by applying UV radiation through a photomask to create multicolor micropatterns from single-colored inverse opals. The lateral dimensions of the micropattern features can be as small as the thickness of the inverse opal.
机译:胶体组件由于光的选择性衍射而产生明显的结构颜色。具有多种结构颜色的微图案吸引了各种光子应用。在这里,报道了一种光刻方法,其使用由加热至高温的负性光刻胶制成的反蛋白石的各向异性收缩来对微图案的尺寸,形状和颜色进行高度控制。收缩在薄膜的整个厚度上均匀发生,导致结构颜色发生蓝移,同时在整个可见光谱范围内保持高反射率。收缩率取决于退火温度和光致抗蚀剂的交联密度。因此,可以通过通过光掩模施加UV辐射以从单色反蛋白石创建多色微图案来对速率进行空间调制。微图案特征的横向尺寸可以与反蛋白石的厚度一样小。

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