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Incorporation of the fluoride induced Si-O bond cleavage and functionalized gold nanoparticle aggregation into one colorimetric probe for highly specific and sensitive detection of fluoride

机译:将氟化物诱导的Si-O键断裂和功能化的金纳米粒子聚集体结合到一个比色探针中,以高度特异性和灵敏地检测氟化物

摘要

A highly selective and sensitive probe was developed for the field test of F- in environmental waters. The probe was fabricated by anchoring 4-mercaptopyridine (MPD) on AuNPs via Au-S interaction to form MPD-AuNPs, and further assembling 3-aminopropyltrimethoxysilane (APTMS) on the surface of MPD-AuNPs. The hydrolysis and cross-link of APTMS resulted in a thin monolayer of Si-O-Si protecting layer to encapsulated MPD-AuNPs. In the assay, F- reacted with Si-O bond and thus destroyed the outer protecting layer of the probe, and further triggered the aggregation of internal MPD-AuNPs by forming N-H-F hydrogen bond. The F- induced aggregation of functionalized AuNPs gave rise to significant solution color switch from red to blue, which facilitated visual assay of F- in the range of 1.0-7.0 mu g mL(-1) by naked eyes. The probe is able to discriminate F- from a wide range of environmentally dominant ions, thus it can be applied to detect F- in drinkable water with satisfactory results that is agreed well with that of using ion chromatography. (C) 2014 Elsevier B.V. All rights reserved.
机译:开发了一种高选择性和灵敏的探针,用于在环境水中进行F-的现场测试。通过经由Au-S相互作用将4-巯基吡啶(MPD)锚定在AuNP上以形成MPD-AuNP,并进一步在MPD-AuNPs的表面上组装3-氨基丙基三甲氧基硅烷(APTMS)来制造探针。 APTMS的水解和交联导致Si-O-Si保护层与封装的MPD-AuNPs形成一层薄单层。在测定中,F-与Si-O键反应,从而破坏了探针的外部保护层,并通过形成N-H-F氢键进一步触发了内部MPD-AuNP的聚集。 F诱导的功能化AuNPs聚集导致溶液颜色从红色显着转换为蓝色,这有助于肉眼对F-进行1.0-7.0μg mL(-1)范围的目测分析。该探针能够从各种环境优势离子中区分出F-,因此可用于检测饮用水中的F-,其令人满意的结果与使用离子色谱法的结果相吻合。 (C)2014 Elsevier B.V.保留所有权利。

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