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揭示向列型液晶元对可定制温度和光谱响应的结构影响。

Unveiling the structural influence of nematic mesogens on customizable temperature and spectral responses.

作者信息

Oh Hyeong Seok, Kim Kyeong Jin, Lee Juyoung, Kim Jong Bin, Ku Kang Hee

机构信息

School of Energy and Chemical Engineering, Ulsan National Institute of Science and Technology (UNIST), Ulsan 44919, Republic of Korea.

Department of Materials Science and Engineering, University of Pennsylvania, Philadelphia, PA 19104, United States.

出版信息

J Colloid Interface Sci. 2025 Jan;677(Pt B):250-258. doi: 10.1016/j.jcis.2024.08.036. Epub 2024 Aug 8.

DOI:10.1016/j.jcis.2024.08.036
PMID:39146813
Abstract

Rapid and accurate detection and visualization of temperature variations near the human body hold significant importance. This study presents thermochromic colloids capable of adjusting the detectable temperature range and reflection wavelength over a wide spectrum. The systematic investigation focuses on understanding the influence of the molecular structure of nematic mesogens on the morphological dynamics of cholesteric liquid crystal droplets and their associated thermochromic behaviors. A tunable colorimetric temperature range (i.e., from 10 to 40 °C) and high sensitivity (i.e., Δλ ΔT > 100nm °C) are realized through precise modulation of the alkyl chain lengths in cyanobiphenyls molecules, combined with a cholesteryl oleyl carbonate as a chiral dopant. We demonstrate the efficiency of a binary mixture of different mesogens, enabling customized structural colors with desired temperature responses. Finally, inspired by the ability of the octopus to camouflage through the elongation or contraction of its pigment cells, thermochromic droplets are embedded within a polymer matrix, resulting in a portable skin patch that offers quick, reversible, and direct temperature visualization of the human body.

摘要

快速准确地检测和可视化人体附近的温度变化具有重要意义。本研究展示了一种热致变色胶体,它能够在宽光谱范围内调节可检测的温度范围和反射波长。系统研究的重点是了解向列型液晶元分子结构对胆甾型液晶液滴形态动力学及其相关热致变色行为的影响。通过精确调节氰基联苯分子中的烷基链长度,并结合胆甾醇油基碳酸酯作为手性掺杂剂,实现了可调比色温度范围(即10至40°C)和高灵敏度(即Δλ/ΔT > 100nm/°C)。我们展示了不同液晶元二元混合物的效率,能够实现具有所需温度响应的定制结构颜色。最后,受章鱼通过色素细胞伸长或收缩进行伪装能力的启发,将热致变色液滴嵌入聚合物基质中,制成了一种便携式皮肤贴片,可对人体温度进行快速、可逆且直接的可视化。

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