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探索聚二乙炔中低温热致变色的起源。

Exploring the Origins of Low-Temperature Thermochromism in Polydiacetylenes.

作者信息

Wilk-Kozubek Magdalena, Potaniec Bartłomiej, Gazińska Patrycja, Cybińska Joanna

机构信息

Materials Science and Engineering Center, Łukasiewicz Research Network-PORT Polish Center for Technology Development, 147 Stabłowicka Street, 54-066 Wrocław, Poland.

Center for Population Diagnostics, Łukasiewicz Research Network-PORT Polish Center for Technology Development, 147 Stabłowicka Street, 54-066 Wrocław, Poland.

出版信息

Polymers (Basel). 2024 Oct 10;16(20):2856. doi: 10.3390/polym16202856.

Abstract

This review article delves into the intriguing phenomenon of low-temperature thermochromism, whereby materials change color in response to temperature variations, with a particular focus on its applications in temperature-sensitive fields like medical storage. By closely examining thermochromic materials, this article highlights their potential to offer innovative solutions for monitoring and preserving thermolabile products that require strict temperature control. This leads to a special emphasis on polydiacetylenes (PDAs), a class of conjugated polymers with unique low-temperature thermochromic properties, positioning them as promising candidates for reliable temperature indicators. This article then explores the underlying mechanisms for fine-tuning the thermochromic behavior of PDAs, particularly discussing recent advancements in PDA design, such as structural alterations of monomers to achieve low-temperature thermochromism. These modifications, influenced by factors like side-chain length, hydrogen-bonding interactions, and the use of copolymers, are intended to result in irreversible color transitions at specific low temperatures, which is crucial to maintaining the integrity of thermally sensitive products. Finally, this article discusses the potential applications of PDAs as thermochromic sensors in tissue biobanking, where their ability to provide visual indications of temperature fluctuations could significantly enhance the monitoring and management of biological samples.

摘要

这篇综述文章深入探讨了低温热致变色这一有趣现象,即材料会随着温度变化而改变颜色,并特别关注其在医疗储存等对温度敏感领域的应用。通过仔细研究热致变色材料,本文强调了它们为监测和保存需要严格温度控制的热敏产品提供创新解决方案的潜力。这使得人们特别关注聚二乙炔(PDA),这是一类具有独特低温热致变色特性的共轭聚合物,使其成为可靠温度指示剂的有希望的候选者。本文接着探讨了微调PDA热致变色行为的潜在机制,特别是讨论了PDA设计的最新进展,例如通过单体的结构改变来实现低温热致变色。这些受侧链长度、氢键相互作用和共聚物使用等因素影响的修饰,旨在在特定低温下产生不可逆的颜色转变,这对于保持热敏产品的完整性至关重要。最后,本文讨论了PDA作为热致变色传感器在组织生物样本库中的潜在应用,在那里它们提供温度波动视觉指示的能力可以显著加强对生物样本的监测和管理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f81/11511177/62038127e91d/polymers-16-02856-g001.jpg

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