College of Polymer Science and Engineering, State Key Laboratory of Polymer Materials Engineering, Sichuan University, Chengdu 610065, P. R. China.
Key Laboratory of Green Printing, Institute of Chemistry, Chinese Academy of Sciences, Beijing Engineering Research Center of Nanomaterials for Green Printing Technology, Beijing National Laboratory for Molecular Sciences, Beijing 100190, China.
Anal Chem. 2022 Jul 12;94(27):9497-9507. doi: 10.1021/acs.analchem.2c01804. Epub 2022 Jun 27.
The sensitivity of colorimetric photonic crystal (PC) sensors have been significantly improved with the advancement of deformable structural color materials, structures design, sensing signal analysis methods, and fabrication strategies. In this perspective, the strategies toward high-sensitivity colorimetric PC sensors are discussed, from the perspectives of molecular design, single sensor construction, and multisensor assembly, which include incorporation of flexible polymer chains, construction of strong sensor-analyte interactions, incorporation of more soft materials, construction of stimuli-angle/orientation relationship, design of colorimetric sensors in series, and assembly of colorimetric PC sensors in parallel. Based on these strategies, progress of high-sensitivity colorimetric PC sensors in recent years is summarized, in terms of mechano-sensors and chemo-/biosensors. Specifically, PC based optical-electrical dual-signal sensing devices are included. Finally, the future development and challenges of high-sensitivity colorimetric PC sensors are presented, in regards to deformable properties, optical properties, analysis methods, and fabrication strategies.
随着可变形结构色材料、结构设计、传感信号分析方法和制造策略的进步,比色光子晶体(PC)传感器的灵敏度得到了显著提高。在这篇观点文章中,从分子设计、单个传感器构建和多传感器组装的角度讨论了高灵敏度比色 PC 传感器的策略,包括引入柔性聚合物链、构建强传感器-分析物相互作用、引入更多软材料、构建刺激角度/方向关系、串联设计比色传感器以及并行组装比色 PC 传感器。基于这些策略,总结了近年来机械传感器和化学/生物传感器中高灵敏度比色 PC 传感器的进展。具体来说,包括基于 PC 的光电双信号传感装置。最后,从可变形性、光学性质、分析方法和制造策略等方面提出了高灵敏度比色 PC 传感器的未来发展和挑战。