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基于具有多种传感能力的水溶性碳纳米点的比率荧光纳米传感器。

Ratiometric fluorescent nanosensor based on water soluble carbon nanodots with multiple sensing capacities.

机构信息

State Key Laboratory of Luminescence and Applications, Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Changchun, 130033, PR China.

出版信息

Nanoscale. 2013 Jun 21;5(12):5514-8. doi: 10.1039/c3nr00619k.

Abstract

A construction strategy for ratiometric fluorescent nanosensors based on water soluble C-dots was developed, which could sense temperature (10-82 °C), pH values (lower than 6.0 or higher than 8.6) and Fe(3+) ions (>0.04 μM) by monitoring the intensity ratios of dual fluorescence bands (Ib/Ig) under 380 nm excitation. Ib/Ig decreased nearly linearly with increasing temperature from 10 to 82 °C. In the pH range from 8.6 to 6.0, the Ib/Ig was nearly constant at 0.75. Ib/Ig gradually decreased from 0.75 to 0.52 in the pH range from 6.0 to 1.9, and increased nearly linearly from 0.52 to 0.75 in the pH range from 1.9 to 1.0. The dual fluorescence behavior was reversible in the pH range from 1.0 to 8.6. As pH increased from 10.6 to 13.0, the green fluorescence band decreased continuously and blue shifted with a nearly linear increase in Ib/Ig from 0.75 to 2.15, while the green fluorescence band cannot be recovered by decreasing the pH value. Ib/Ig was ultrasensitive and selective in presence of Fe(3+) (>0.04 μM) in neutral aqueous environments. The two fluorescence bands of the C-dots were attributed to different surface states that may produce different fluorescent signal responses to external physical or chemical stimuli.

摘要

基于水溶性 C 点开发了一种比率荧光纳米传感器的构建策略,该传感器可以通过在 380nm 激发下监测双荧光带(Ib/Ig)的强度比来感测温度(10-82°C)、pH 值(低于 6.0 或高于 8.6)和 Fe(3+)离子(>0.04μM)。Ib/Ig 随温度从 10°C 到 82°C 的升高几乎呈线性下降。在 pH 值范围从 8.6 到 6.0 时,Ib/Ig 在 0.75 附近几乎恒定。在 pH 值范围从 6.0 到 1.9 时,Ib/Ig 从 0.75 逐渐下降到 0.52,在 pH 值范围从 1.9 到 1.0 时,Ib/Ig 几乎呈线性增加到 0.75。在 pH 值范围从 1.0 到 8.6 时,双荧光行为是可逆的。当 pH 值从 10.6 增加到 13.0 时,绿色荧光带不断减小,并且随着 Ib/Ig 从 0.75 增加到 2.15,蓝移几乎呈线性增加,而在降低 pH 值时,绿色荧光带无法恢复。Ib/Ig 在中性水相环境中对 Fe(3+)(>0.04μM)具有超灵敏和选择性。C 点的两个荧光带归因于不同的表面状态,这可能会对外部物理或化学刺激产生不同的荧光信号响应。

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