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受变色龙皮肤启发的聚合物颗粒用于检测甲苯蒸气。

Chameleon skin-inspired polymeric particles for the detection of toluene vapor.

作者信息

Avşar Deniz Işınsu, Bukusoglu Emre

机构信息

Department of Chemical Engineering, Middle East Technical University, Dumlupınar Bulvarı No. 1, Çankaya, Ankara, 06800, Turkey.

出版信息

Soft Matter. 2020 Sep 30;16(37):8683-8691. doi: 10.1039/d0sm01289k.

Abstract

Inspired by the structural coloring in nature, especially the crystalline ordering and responsive characteristics of those found in chameleon skins, artificial photonic materials for sensor applications were fabricated. Cholesteric liquid crystals (CLCs) were employed in the templated synthesis of polymeric particles with periodic structures that allow visible light to undergo Bragg reflection and their response was tested against volatile organic compounds (VOCs). We demonstrate that the particles were responsive against toluene with detection limits on the order of 100 ppm. Such sensitivity was shown to be achieved due to the critical steps followed during the CLC-templated synthesis of particles that resulted in the storage of elastic energy in the anisotropic glassy polymer network. In addition, the design of particle-assisted sensor chips that allow easy integration into wearable optical devices for reliable, continuous and online tracking of VOC concentrations is presented. These results proved that sensors developed from the CLC-templated particles can be used multiple times without a significant loss of sensitivity and offered rapid, sensitive and battery-free detection.

摘要

受自然界结构色的启发,尤其是变色龙皮肤中发现的晶体有序性和响应特性,制备了用于传感器应用的人工光子材料。胆甾相液晶(CLC)被用于模板合成具有周期性结构的聚合物颗粒,这种结构允许可见光发生布拉格反射,并测试了它们对挥发性有机化合物(VOC)的响应。我们证明这些颗粒对甲苯有响应,检测限约为100 ppm。这种灵敏度的实现是由于在CLC模板合成颗粒过程中遵循的关键步骤,这些步骤导致在各向异性玻璃态聚合物网络中储存了弹性能量。此外,还介绍了颗粒辅助传感器芯片的设计,该设计允许轻松集成到可穿戴光学设备中,以可靠、连续和在线跟踪VOC浓度。这些结果证明,由CLC模板颗粒开发的传感器可以多次使用而不会显著损失灵敏度,并提供快速、灵敏且无需电池的检测。

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