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用于可靠检测水中铜的液体光子晶体检测试剂。

Liquid photonic crystal detection reagent for reliable sensing of Cu in water.

作者信息

Zhang Yixin, Ge Jianping

机构信息

School of Chemistry and Molecular Engineering, Shanghai Key Laboratory of Green Chemistry and Chemical Processes, East China Normal University Shanghai 200062 China

出版信息

RSC Adv. 2020 Mar 17;10(18):10972-10979. doi: 10.1039/d0ra01014f. eCollection 2020 Mar 11.

Abstract

A traditional hydrogel photonic crystal sensor is prepared by multiple steps, including colloidal assembly, polymerization, and recognition group modification, and its measurement repeatability is a challenge due to the inevitable deviations in sensor fabrication and application. In this work, a salicylic acid-containing "SiO/propylene carbonate" liquid photonic crystal (Sal-LPC), as a new photonic sensing material, was developed to demonstrate reliable measurement of Cu in water. When the Sal-LPC reagent was mixed with the test sample, the Cu promoted the release of H from Sal and shrank the photonic crystal lattice, so that the Cu concentration could be determined by the reflection blueshift of liquid PC. The Sal-LPC reagent showed a stronger response to Cu than to other cations, and its sensitivity and measurement range could be optimized by the particle fraction and Sal dosage. Compared to traditional PC hydrogel sensors, the liquid PC reagent was composed of colloidal particles and responsive species, which required no strict control in synthesis. More importantly, the optical response of the liquid PC reagent was scarcely affected by changes in synthesis, storage, or application, and it could interact with the analyte quickly and quantitatively, which ensured accurate and repeatable measurement in either chemical analysis or environmental monitoring.

摘要

传统的水凝胶光子晶体传感器是通过多步制备的,包括胶体组装、聚合和识别基团修饰,由于传感器制造和应用中不可避免的偏差,其测量重复性是一个挑战。在这项工作中,开发了一种含水杨酸的“SiO/碳酸丙烯酯”液体光子晶体(Sal-LPC)作为一种新型光子传感材料,以证明对水中铜的可靠测量。当Sal-LPC试剂与测试样品混合时,铜促进了水杨酸中氢的释放并使光子晶格收缩,从而可以通过液体光子晶体的反射蓝移来确定铜的浓度。Sal-LPC试剂对铜的响应比对其他阳离子更强,其灵敏度和测量范围可以通过颗粒分数和水杨酸用量进行优化。与传统的光子晶体水凝胶传感器相比,液体光子晶体试剂由胶体颗粒和响应物种组成,在合成过程中不需要严格控制。更重要的是,液体光子晶体试剂的光学响应几乎不受合成、储存或应用变化的影响,并且它可以与分析物快速定量相互作用,这确保了在化学分析或环境监测中进行准确且可重复的测量。

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