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首页> 外文期刊>Advanced Science >Multiple Emitting Amphiphilic Conjugated Polythiophenes‐Coated CdTe QDs for Picogram Detection of Trinitrophenol Explosive and Application Using Chitosan Film and Paper‐Based Sensor Coupled with Smartphone
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Multiple Emitting Amphiphilic Conjugated Polythiophenes‐Coated CdTe QDs for Picogram Detection of Trinitrophenol Explosive and Application Using Chitosan Film and Paper‐Based Sensor Coupled with Smartphone

机译:壳聚糖薄膜和纸基传感器与智能手机结合使用的多发射两亲共轭聚噻吩涂层CdTe量子点用于三硝基酚炸药的图像检测和应用

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Novel multiple emitting amphiphilic conjugated polythiophene‐coated CdTe quantum dots for picogram level determination of the 2,4,6‐trinitrophenol (TNP) explosive are developed. Four biocompatible sensors, cationic polythiophene nanohybrids (CPTQDs), nonionic polythiophene nanohybrids (NPTQDs), anionic polythiophene nanohybrids (APTQDs), and thiophene copolymer nanohybrids (TCPQDs), are designed using an in situ polymerization method, which shows highly enhanced fluorescence intensity and quantum yield (up to 78%). All sensors are investigated for nitroexplosive detection to provide a remarkable fluorescence quenching for TNP and the quenching efficiency reached 96% in the case of TCPQDs. The fluorescence of the sensors are quenched by TNP through inner filter effect, electrostatic, π?π, and hydrogen bonding interactions. Under optimal conditions, the detection limits of CPTQDs, NPTQDs, APTQDs, and TCPQDs are 2.56, 7.23, 4.12, and 0.56 × 10 ?9 m , respectively, within 60 s. More importantly, portable, cost effective, and simple to use paper strips and chitosan film are successfully applied to visually detect as little as 2.29 pg of TNP. The possibility of utilizing a smartphone with a color‐scanning APP in the determination of TNP is also established. Moreover, the practical application of the developed sensors for TNP detection in tap and river water samples is described with satisfactory recoveries of 98.02?107.50%.
机译:开发了新型的多发射两亲共轭聚噻吩涂层的CdTe量子点,用于确定2,4,6-三硝基苯酚(TNP)炸药的皮克级。四种生物相容性传感器,阳离子聚噻吩纳米杂化物(CPTQD),非离子聚噻吩纳米杂化物(NPTQDs),阴离子聚噻吩纳米杂化物(APTQDs)和噻吩共聚物纳米杂化物(TCPQDs)使用量子聚合方法设计,并显示出高度增强的荧光强度产率(高达78%)。对所有传感器进行了硝化爆炸检测,以提供对TNP的显着荧光猝灭,在TCPQD的情况下,猝灭效率达到96%。传感器的荧光通过内部过滤器效应,静电,πππ和氢键相互作用被TNP淬灭。在最佳条件下,在60 s内CPTQD,NPTQD,APTQD和TCPQD的检出限分别为2.56、7.23、4.12和0.56×10?9 m。更重要的是,便携式,经济高效且易于使用的纸条和壳聚糖薄膜已成功应用于视觉检测,仅需2.29 pg的TNP。还确定了将智能手机与彩色扫描APP一起用于确定TNP的可能性。此外,描述了开发的用于自来水和河水样品中TNP检测的传感器的实际应用,其回收率为98.02%〜107.50%。

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