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纳米粒子组装微胶囊,用作 pH 值和氨传感器。

Nanoparticle assembled microcapsules for application as pH and ammonia sensor.

机构信息

Nanomaterials Laboratory, I & PC Division, Indian Institute of Chemical Technology, Tarnaka, Hyderabad 500607, India.

出版信息

Anal Chim Acta. 2011 Dec 5;708(1-2):75-83. doi: 10.1016/j.aca.2011.10.001. Epub 2011 Oct 6.

Abstract

The encapsulation of molecular probes in a suitable nanostructured matrix can be exploited to alter their optical properties and robustness for fabricating efficient chemical sensors. Despite high sensitivity, simplicity, selectivity and cost effectiveness, the photo-destruction and photo-bleaching are the serious concerns while utilizing molecular probes. Herein we demonstrate that hydroxy pyrene trisulfonate (HPTS), a pH sensitive molecular probe, when encapsulated in a microcapsule structure prepared via the assembly of silica nanoparticles mediated by poly-L-lysine and trisodium citrate, provides a robust sensing material for pH sensing under the physiological conditions. The temporal evolution under continuous irradiation indicates that the fluorophore inside the silica microcapsule is extraordinarily photostable. The fluorescence intensity alternation at dual excitation facilitates for a ratiometic sensing of the pH, however, the fluorescence lifetime is insensitive to hydrogen ion concentration. The sensing scheme is found to be robust, fast and simple for the measurement of pH in the range 5.8-8.0, and can be successfully applied for the determination of ammonia in the concentration range 0-1.2 mM, which is important for aquatic life and the environment.

摘要

将分子探针封装在合适的纳米结构基质中,可以改变它们的光学性质和稳定性,从而制造高效的化学传感器。尽管分子探针具有高灵敏度、简单、选择性和成本效益,但在利用时,光破坏和光漂白是严重的问题。本文中,我们证明了当将对 pH 敏感的分子探针羟基金刚烷三磺酸(HPTS)封装在通过多聚-L-赖氨酸和柠檬酸钠介导的二氧化硅纳米颗粒组装制备的微胶囊结构中时,它提供了一种在生理条件下进行 pH 传感的稳健感测材料。连续辐照下的时间演化表明,二氧化硅微胶囊内的荧光团具有非凡的耐光性。双激发下的荧光强度交替有助于 pH 的比色传感,然而,荧光寿命对氢离子浓度不敏感。该传感方案对于在 5.8-8.0 范围内测量 pH 值是稳健、快速和简单的,并且可以成功应用于测定浓度范围为 0-1.2mM 的氨,这对于水生生物和环境非常重要。

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