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基于一体式等离子体传感器元件的用于检测和区分卤化物离子的时-色彩度传感器阵列。

Chrono-colorimetric sensor array for detection and discrimination of halide ions using an all-in-one plasmonic sensor element.

机构信息

Department of Chemistry, Sharif University of Technology, Tehran, 111559516, Iran.

Department of Analytical Chemistry, Faculty of Chemistry, Kharazmi University, 15719-14911, Tehran, Iran.

出版信息

Talanta. 2023 Jul 1;259:124528. doi: 10.1016/j.talanta.2023.124528. Epub 2023 Apr 11.

Abstract

Most nanoparticle based colorimetric sensor array utilize several sensor elements and static response for discrimination of target analytes. This approach can be complicated and costly to synthesize or functionalize different nanoparticles for providing wide color variation. Herein, triangular silver nanoparticles (TSNPs) were used to develop a colorimetric sensor array by time-dimension responses. The principle of this sensor array is based on the diverse etching process of TSNPs in the presence of three halide ions, including bromide (Br), iodide (I) and chloride (Cl). Various etchings of TSNPs induced color changes at different reaction time intervals, which produced a colorimetric pattern for each ion. Therefore, using time dependent etching responses of TSNPs as a single sensing component can produce a wide color variation which can be distinguished by naked eyes. The colorimetric responses of TSNPs upon the addition of different concentrations of halide ions have been analyzed by PLS regression (PLS-R) and PLS discriminant analysis (PLS-DA). The analytical figures of merit confirmed that the developed chrono-colorimetric TSNPs -based sensor array is successful in both the discrimination and quantitative detection of halide ions. At the final step, the three halide ions were accurately determined in a real water sample, which verified the potential of the developed sensor in a real sample.

摘要

大多数基于纳米粒子的比色传感器阵列利用多个传感器元件和静态响应来区分目标分析物。这种方法在合成或功能化不同的纳米粒子以提供广泛的颜色变化时可能会很复杂和昂贵。在此,使用三角形银纳米粒子(TSNPs)通过时间维度响应来开发比色传感器阵列。该传感器阵列的原理基于在三种卤化物离子(包括溴化物(Br)、碘化物(I)和氯化物(Cl))存在下 TSNPs 的不同蚀刻过程。TSNPs 的各种蚀刻在不同的反应时间间隔引起颜色变化,从而为每种离子产生比色图案。因此,使用 TSNPs 的时间相关蚀刻响应作为单个传感组件可以产生广泛的颜色变化,可以通过肉眼区分。通过偏最小二乘回归(PLS-R)和偏最小二乘判别分析(PLS-DA)分析了 TSNPs 对不同浓度卤化物离子的比色响应。分析的衡量标准证实,开发的基于时间比色 TSNPs 的传感器阵列在卤化物离子的识别和定量检测方面都取得了成功。在最后一步,在实际水样中准确测定了三种卤化物离子,验证了开发的传感器在实际样品中的潜力。

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