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用于防伪安全措施的基于刺激响应性手性纤维素纳米晶体的自组装体:综述

Stimuli-Responsive Chiral Cellulose Nanocrystals Based Self-Assemblies for Security Measures to Prevent Counterfeiting: A Review.

作者信息

Singh Shiva, Bhardwaj Shakshi, Choudhary Nitesh, Patgiri Rohan, Teramoto Yoshikuni, Maji Pradip K

机构信息

Department of Polymer and Process Engineering, Indian Institute of Technology Roorkee, Saharanpur Campus, Saharanpur 240071, India.

Division of Forest & Biomaterials Science, Graduate School of Agriculture, Kyoto University, Kitashirakawa Oiwake-cho, Sakyo-ku, Kyoto 6068502, Japan.

出版信息

ACS Appl Mater Interfaces. 2024 Aug 14;16(32):41743-41765. doi: 10.1021/acsami.4c08290. Epub 2024 Aug 5.

Abstract

The proliferation of misleading information and counterfeit products in conjunction with technical progress presents substantial worldwide issues. To address the issue of counterfeiting, many tactics, such as the use of luminous anticounterfeiting systems, have been investigated. Nevertheless, traditional fluorescent compounds have a restricted effectiveness. Cellulose nanocrystals (CNCs), known for their renewable nature and outstanding qualities, present an excellent opportunity to develop intelligent, optically active materials formed due to their self-assembly behavior and stimuli response. CNCs and their derivatives-based self-assemblies allow for the creation of adaptable luminous materials that may be used to prevent counterfeiting. These materials integrate the photophysical characteristics of optically active components due to their stimuli-responsive behavior, enabling their use in fibers, labels, films, hydrogels, and inks. Despite substantial attention, existing materials frequently fall short of practical criteria due to limited knowledge and poor performance comparisons. This review aims to provide information on the latest developments in anticounterfeit materials based on stimuli-responsive CNCs and derivatives. It also includes the scope of artificial intelligence (AI) in the near future. It will emphasize the potential uses of these materials and encourage future investigation in this rapidly growing area of study.

摘要

误导性信息和假冒产品的泛滥,再加上技术进步,带来了重大的全球性问题。为了解决假冒问题,人们研究了许多策略,比如使用发光防伪系统。然而,传统荧光化合物的效果有限。纤维素纳米晶体(CNCs)以其可再生的特性和出色的品质而闻名,由于其自组装行为和刺激响应,为开发智能、光学活性材料提供了绝佳机会。基于CNCs及其衍生物的自组装可以创造出可用于防伪的适应性发光材料。这些材料因其刺激响应行为整合了光学活性成分的光物理特性,使其可用于纤维、标签、薄膜、水凝胶和油墨。尽管受到了广泛关注,但由于知识有限和性能比较不佳,现有材料往往达不到实际标准。本综述旨在提供基于刺激响应性CNCs及其衍生物的防伪材料的最新进展信息。它还包括人工智能(AI)在不久的将来的应用范围。它将强调这些材料的潜在用途,并鼓励在这个快速发展的研究领域进行未来的研究。

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