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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Constitution of a visual detection system for lead(II) on polydiacetylene-glycine embedded nanofibrous membranes
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Constitution of a visual detection system for lead(II) on polydiacetylene-glycine embedded nanofibrous membranes

机译:聚二乙炔-甘氨酸包埋的纳米纤维膜上铅(II)视觉检测系统的构建

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With the aim to develop pH-paper-like lead ion (Pb2+) sensing materials, we demonstrate a colorimetric strip, which relies on a SiO2 nanoparticle (NP) decorated polydiacetylene embedded polyacrylonitrile nanofibrous membrane (PAN NFM), that undergoes a brilliant blue-to-red color transition as well as 'Turn-On' fluorescence upon incubation with Pb2+. The introduction of an amino acid (glycine) headgroup into a supramolecularly assembled 10,12-pentacosadiynoic acid results in a Pb2+-induced chromic conjugated polymer that is quickly photopolymerizable, rapidly responsive to Pb2+ and specifically identifiable. Moreover, the SiO2 NPs are certified as an efficient sensitivity promoter when their content reaches 0.5 wt% in the strip. With this understanding, the color change that is caused by 0.24 mu M Pb2+ at ambient temperature can be easily perceived by the naked eye, which indicates the superiority of our strip compared with previous approaches, and it is also noteworthy that a fluorescent signal could also be produced in 2 min. Furthermore, RGB (red-green-blue) digital parameters obtained from images of the strips and automatic read outs via a smartphone were processed statistically through principal component analysis and then used to elaborate the standard curve and quantify Pb2+ concentration. This methodology for assaying and quantifying Pb2+ avoids time-consuming sample preparation, expensive laboratory techniques, and specialized personnel required to carry out conventional analytical methods.
机译:为了开发类似pH纸样的铅离子(Pb2 +)传感材料,我们展示了一种比色条,该条依靠SiO2纳米颗粒(NP)装饰的聚二乙炔嵌入式聚丙烯腈纳米纤维膜(PAN NFM)进行,该膜经历了艳丽的蓝色-与Pb2 +一起孵育时,颜色会发生从红色到红色的过渡以及“打开”荧光。将氨基酸(甘氨酸)头基引入超分子组装的10,12-戊二十二碳六烯酸中,可导致Pb2 +诱导的铬共轭聚合物快速光聚合,对Pb2 +迅速响应且可明确识别。此外,当SiO 2 NP的含量在胶条中达到0.5 wt%时,它们被证明是一种有效的敏感性促进剂。有了这种理解,肉眼就可以很容易地察觉到在室温下由0.24μM Pb2 +引起的颜色变化,这表明我们的带材与以前的方法相比具有优越性,而且值得注意的是,荧光信号也可以在2分钟内产生。此外,通过主成分分析对从条带图像获得的RGB(红绿蓝)数字参数和通过智能手机自动读取的数据进行统计处理,然后用于绘制标准曲线并量化Pb2 +浓度。这种用于分析和定量Pb2 +的方法避免了费时的样品制备,昂贵的实验室技术以及执行常规分析方法所需的专门人员。

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