Lin Yu-Chun, Lee Lin-Ruei, Tsai Tsung-Hung, Lin Ji, Hsu Yen-Shen, Kesavan Manibalan, Lin Yu-Liang, Chen Yi-Fan, Chen Jiun-Tai
Department of Applied Chemistry, National Yang Ming Chiao Tung University, Hsinchu, 300093, Taiwan.
Center for Emergent Functional Matter Science, National Yang Ming Chiao Tung University, Hsinchu, 300093, Taiwan.
Small. 2025 Feb;21(8):e2409919. doi: 10.1002/smll.202409919. Epub 2025 Jan 14.
Anticounterfeiting technologies have become increasingly crucial due to the growing issue of counterfeit goods, particularly in high-value industries. Traditional methods such as barcodes and holograms are prone to replication, prompting the need for advanced, cost-effective, and efficient solutions. In this work, a practical application of anodic aluminum oxide (AAO) membranes are presented for anticounterfeiting, which addresses the challenges of high production costs and complex fabrication processes. Unlike previous approaches requiring metal coatings for color generation, this method uses commercial aluminum foils to produce colorful AAO membranes without metal layers. Elemental mapping suggests that impurities on the aluminum surface contribute to enhanced reflectivity, aiding photonic crystal formation. A two-step anodization process that creates patterned AAO membranes is further introduced, with the pattern clarity controlled by anodization time. Additionally, a pH-responsive film composed of 2-anilino-6-dibutylaminofluoran (ODB-2) and thermoplastic polyurethane (TPU) is integrated, enabling dynamic color changes under varying pH conditions, further enhancing the anticounterfeiting functionality. This streamlined approach provides a scalable and cost-effective solution for developing versatile AAO membranes for industrial anticounterfeiting applications.
由于假冒商品问题日益严重,尤其是在高价值行业,防伪技术变得越来越重要。条形码和全息图等传统方法容易被复制,这促使人们需要先进、经济高效的解决方案。在这项工作中,展示了阳极氧化铝(AAO)膜在防伪方面的实际应用,该应用解决了高生产成本和复杂制造工艺的挑战。与以往需要金属涂层来产生颜色的方法不同,这种方法使用商业铝箔来生产没有金属层的彩色AAO膜。元素映射表明,铝表面的杂质有助于提高反射率,有助于光子晶体的形成。进一步介绍了一种两步阳极氧化工艺,该工艺可制造出有图案的AAO膜,图案清晰度由阳极氧化时间控制。此外,还集成了一种由2-苯胺基-6-二丁基氨基荧烷(ODB-2)和热塑性聚氨酯(TPU)组成的pH响应膜,使其在不同pH条件下能够动态变色,进一步增强了防伪功能。这种简化的方法为开发用于工业防伪应用的多功能AAO膜提供了一种可扩展且经济高效的解决方案。