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Chromogenic Detection of Aqueous Formaldehyde Using Functionalized Silica Nanoparticles

机译:使用功能化二氧化硅纳米粒子对甲醛水溶液进行生色检测

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Silica nanoparticles functionalized with thiol reactive units and bulky polar polyamines were used for the selective colorimetric detection of formaldehyde. The reaction of thiols groups in the nanoparticles surface with a squaraine dye resulted in loss of the pi-conjugation of the chromophores, and the subsequent bleaching of the solution. However, when formaldehyde was present in the suspension, the thiol-squaraine reaction was inhibited and a chromogenic response was observed. A selective response to formaldehyde was observed only when the thiol and polyamine groups were anchored to the silica surface. The observed selective response was ascribed to the fact that bulky polyamines generate a highly polar environment around thiols, which were only able to react with the small and polar formaldehyde, but not with other aldehydes. The sensing nanoparticles showed a limit of detection (LOD) for formaldehyde of 36 ppb in water.
机译:用硫醇反应单元和庞大的极性多胺官能化的二氧化硅纳米粒子用于甲醛的比色检测。纳米颗粒表面的硫醇基团与方酸菁染料的反应导致生色团的π-共轭损失,以及随后的溶液漂白。然而,当悬浮液中存在甲醛时,硫醇-方酸反应被抑制并且观察到发色反应。仅当巯基和多胺基团固定在二氧化硅表面时,才观察到对甲醛的选择性反应。观察到的选择性反应归因于以下事实:庞大的多胺在硫醇周围产生了一个高极性的环境,该环境只能与小而极性的甲醛反应,而不能与其他醛反应。感测的纳米颗粒在水中的甲醛检测限(LOD)为36 ppb。

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