Thermochromic Photonic Crystal Paper with Integrated Multilayer Structure and Fast Thermal Response: A Waterproof and Mechanically Stable Material for Structural-Colored Thermal Printing

IF 26.8 1区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Xin Zhang, Tian Yin, Jianping Ge
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Abstract

Thermochromic photonic crystals are promising materials for thermal printing due to their unfaded colors under chemical/illuminated environments and the absence of toxic chemicals. However, the slow thermochromic response, the multistep printing procedures, the use of inks or developing liquids, and the requirement of expensive parts in printers limit their applications. Here, a thermochromic polyurethane/hydrophobic-SiO2 photonic crystal/paraffin (PU/HPO-SiO2-PC/Para) film with an integrated multilayer structure is fabricated for all-solid-state and single-step thermal printing that is fully compatible with commercial printers. The fast thermochromic response in milliseconds enables high-resolution and grayscale printing as the paraffin infiltration and the color change can be finely controlled in a microscale range. The integrated and hydrophobic multilayer structure renders the thermochromic film good stability in daily liquids, which addresses the long-existing concern of print fading. Meanwhile, the integrated multilayer structure also enhances the mechanical stability when it is deposited on fibrous paper so that people can fold, cut, or staple the thermal papers, and make notes confidently in practical usage.

Abstract Image

具有集成多层结构和快速热响应的热致变色光子晶体纸:用于结构性彩色热打印的防水且机械稳定的材料
热致变色光子晶体在化学/光照环境下不会褪色,而且不含有毒化学物质,因此是很有前途的热打印材料。然而,热致变色反应缓慢、多步骤打印程序、油墨或显影液的使用以及打印机对昂贵部件的要求限制了它们的应用。在这里,我们制作了一种具有集成多层结构的热致变色聚氨酯/疏水性二氧化硅光子晶体/石蜡(PU/HPO-SiO2-PC/Para)薄膜,用于全固态和单步热打印,与商用打印机完全兼容。由于石蜡渗透和颜色变化可在微尺度范围内精细控制,因此毫秒级的快速热致变色响应可实现高分辨率和灰度打印。一体化疏水多层结构使热致变色薄膜在日常液体中具有良好的稳定性,从而解决了长期存在的印刷品褪色问题。同时,集成多层结构还增强了在纤维纸上沉积时的机械稳定性,使人们可以折叠、切割或装订热敏纸,并在实际使用中放心地做笔记。
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来源期刊
Advanced Materials
Advanced Materials 工程技术-材料科学:综合
CiteScore
43.00
自引率
4.10%
发文量
2182
审稿时长
2 months
期刊介绍: Advanced Materials, one of the world's most prestigious journals and the foundation of the Advanced portfolio, is the home of choice for best-in-class materials science for more than 30 years. Following this fast-growing and interdisciplinary field, we are considering and publishing the most important discoveries on any and all materials from materials scientists, chemists, physicists, engineers as well as health and life scientists and bringing you the latest results and trends in modern materials-related research every week.
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