杨晨,雷文财.基于纸基微流控芯片的防伪无废弃包装[J].包装工程,2024,45(13):98-103.
YANG Chen,LEI Wencai.Anti-counterfeit and Waste-free Packaging Based on Paper-based Microfluidic Chip[J].Packaging Engineering,2024,45(13):98-103.
基于纸基微流控芯片的防伪无废弃包装
Anti-counterfeit and Waste-free Packaging Based on Paper-based Microfluidic Chip
投稿时间:2024-03-19  
DOI:10.19554/j.cnki.1001-3563.2024.13.012
中文关键词:  纸基微流控芯片  纸包装  防伪  无废弃包装
英文关键词:paper-based microfluidic chip  paper packaging  anti-counterfeit  waste-free packaging
基金项目:
作者单位
杨晨 湖北京华彩印有限公司,湖北 孝感 432800 
雷文财 湖北京华彩印有限公司,湖北 孝感 432800 
AuthorInstitution
YANG Chen Hubei Jinghua Colour Printing Company Limited, Hubei Xiaogan 432800, China 
LEI Wencai Hubei Jinghua Colour Printing Company Limited, Hubei Xiaogan 432800, China 
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中文摘要:
      目的 在当今环保意识不断增强的背景下,纸基微流控技术以其低成本、可降解的特点,逐渐成为包装行业的研究热点。本研究旨在设计一种基于纸基微流控芯片的多功能包装,通过碳点的特异性荧光响应实现防伪功能,并结合导电油墨器件添加趣味教学功能,以满足现代环境的无废弃包装要求。方法 通过丝网印刷的方法,构建荧光传感与导电油墨器件一体化的纸基微流控芯片,粘贴在传统纸质包装的内表面制备具有防伪功能的无废弃包装。结果 经测试,该包装可以通过碳点材料的荧光与猝灭鉴别产品真伪,并在滴入导电油墨后通过发光器件起到趣味教学的作用。结论 将纸基微流控芯片与纸质包装相结合,为产品防伪与包装可持续应用提供了一种可行的方法。
英文摘要:
      In the context of the growing awareness of environmental protection today, paper-based microfluidic technology, characterized by low cost and biodegradability, has gradually become a hot topic of research in the packaging industry. The work aims to design multifunctional packaging utilizing paper-based microfluidic chip technology, which utilizes the unique fluorescent response of carbon dots for anti-counterfeiting purposes and integrates a teaching component through the use of conductive ink devices to meet the contemporary environmental standards for waste-free packaging materials. Through the utilization of silk screen printing technique, a paper-based microfluidic chip integrating fluorescent sensing and conductive ink components was fabricated, adhered onto the inner surface of conventional paper packaging to create waste-free anti-counterfeit packaging. This integration allowed for product authenticity verification under UV light irradiation and offered an educational dimension through luminescence demonstration post-application of conductive ink. The fusion of paper-based microfluidic chips with paper packaging presents a viable approach for enhancing product security and promoting sustainable packaging practices.
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