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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >A novel and convenient near-infrared fluorescence 'turn off-on' nanosensor for detection of glucose and fluoride anions
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A novel and convenient near-infrared fluorescence 'turn off-on' nanosensor for detection of glucose and fluoride anions

机译:一种新颖便捷的近红外荧光“关闭”纳米传感器,用于检测葡萄糖和氟离子

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In this paper, 3-aminobenzeneboronic acid functionalized CuInS2 quantum dots (APBA-CuInS2 QDs) were prepared and utilized as a near-infrared fluorescence nanosensor for the detection of glucose and fluoride anions. The APBA-CuInS2 QDs had a symmetric fluorescence emission centered at 742 nm that was in the near-infrared spectral region. The APBA functional groups, which were reactive toward vicinal diols, could covalently bridge the glucose molecule and induced the initial dispersed APBA-CuInS2 QDs aggregate to form a large assembly, leading to the fluorescence of APBA-CuInS2 QDs turned off via the surface quenching states induced mechanism. When fluoride anions were added into the APBA-CuInS2 QDs/glucose system, the assembly was destroyed and as a result the quenched fluorescence dramatically turned on. The proposed nanosensor could be used for glucose detection in the concentration range of 0.005-8 mmol L-1 with a detection limit of 1.2 mu mol L-1. The linear range for fluoride anions was 0.1-700 mu mol L-1 with a detection limit of 0.029 mu mol L-1. Furthermore, the feasibility of the proposed nanosensor in real samples assay was also studied and satisfactory results were obtained. (C) 2014 Elsevier B.V. All rights reserved.
机译:本文制备了3-氨基苯硼酸官能化的CuInS2量子点(APBA-CuInS2 QDs),并将其用作检测葡萄糖和氟离子的近红外荧光纳米传感器。 APBA-CuInS2量子点具有对称的荧光发射,中心在742 nm处,处于近红外光谱区域。对邻二醇具有反应性的APBA官能团可以共价桥接葡萄糖分子并诱导初始分散的APBA-CuInS2 QD聚集形成大的装配,从而导致APBA-CuInS2 QD的荧光通过表面淬灭状态而关闭诱导机制。当将氟化物阴离子添加到APBA-CuInS2 QDs /葡萄糖系统中时,组件被破坏,因此淬灭的荧光显着打开。提出的纳米传感器可用于浓度范围为0.005-8 mmol L-1的葡萄糖检测,检测限为1.2μmol L-1。氟阴离子的线性范围为0.1-700μmolL-1,检出限为0.029μmolL-1。此外,还研究了所提出的纳米传感器在实际样品中的可行性,并获得了满意的结果。 (C)2014 Elsevier B.V.保留所有权利。

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