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用于液滴等离子体颜色传感器的防水纤维素基底:在水中易分解硫化物测定中的应用。

Waterproof Cellulose-Based Substrates for In-Drop Plasmonic Colorimetric Sensing of Volatiles: Application to Acid-Labile Sulfide Determination in Waters.

机构信息

Centro de Investigación Mariña, Universidade de Vigo, Departamento de Química Analítica e alimentaria, Grupo QA2, Edificio CC Experimentais, Campus de Vigo, As Lagoas, Marcosende, 36310 Vigo, Spain.

出版信息

ACS Sens. 2022 Mar 25;7(3):839-848. doi: 10.1021/acssensors.1c02585. Epub 2022 Mar 14.

Abstract

The present work reports on the assessment of widely available waterproof cellulose-based substrates for the development of sensitive in-drop plasmonic sensing approaches. The applicability of three inexpensive substrates, namely, Whatman 1PS, polyethylene-coated filter paper, and tracing paper, as holders for microvolumes of colloidal solutions was evaluated. Waterproof cellulose-based substrates demonstrated to be highly convenient platforms for analytical purposes, as they enabled generation of volatiles and syringeless drop exposure unlike conventional single-drop microextraction approaches and can behave as sample compartments for smartphone-based colorimetric sensing in an integrated way. Remarkably, large drop volumes (≥20 μL) of colloidal solutions can be employed for enrichment processes when using Whatman 1PS as holder. In addition, the stability and potential applicability of spherical, rod-shaped, and core-shell metallic NPs onto waterproof cellulose-based substrates was evaluated. In particular, Au@AgNPs showed potential for the colorimetric detection of generated HS, I, and Br, whereas AuNRs hold promise for I, Br, and Hg colorimetric sensing. As a proof of concept, a smartphone-based colorimetric assay for determination of acid-labile sulfide in environmental water samples was developed with the proposed approach taking advantage of the ability of Au@AgNPs for HS sensing. The assay showed a limit of detection of 0.46 μM and a repeatability of 4.4% ( = 8), yielding satisfactory recoveries (91-107%) when applied to the analysis of environmental waters.

摘要

本工作评估了广泛可用的防水纤维素基底物,用于开发灵敏的液滴内等离子体传感方法。评估了三种廉价的底物,即 Whatman 1PS、涂覆聚乙烯的滤纸和描图纸,作为胶体溶液微体积的载体的适用性。防水纤维素基底物表现出非常适合分析目的的平台,因为它们能够生成挥发性物质,并且不像传统的单滴微萃取方法那样需要使用注射器来暴露液滴,并且可以作为智能手机基比色传感的集成样品腔。值得注意的是,当使用 Whatman 1PS 作为载体时,可以使用较大的胶体溶液体积(≥20 μL)进行富集过程。此外,评估了球形、棒状和核壳金属 NPs 在防水纤维素基底物上的稳定性和潜在适用性。特别是,Au@AgNPs 显示出对生成的 HS、I 和 Br 的比色检测潜力,而 AuNRs 有望用于 I、Br 和 Hg 的比色传感。作为概念验证,利用 Au@AgNPs 对 HS 传感的能力,开发了一种基于智能手机的比色测定法,用于测定环境水样中的酸不稳定硫化物。该测定法的检测限为 0.46 μM,重复性为 4.4%(n=8),当应用于环境水样的分析时,回收率令人满意(91-107%)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b4e/8961881/28d566e758c8/se1c02585_0001.jpg

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