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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 >Imprinted polymer-carbon consolidated composite fiber sensor for substrate-selective electrochemical sensing of folic acid
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Imprinted polymer-carbon consolidated composite fiber sensor for substrate-selective electrochemical sensing of folic acid

机译:印polymer-carbon合并复合光纤传感器substrate-selective电化学传感的叶酸

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摘要

Molecularly imprinted polymers (MIPs) are often electrically insulating materials. Due to the presence of diffusion barrier(s) in between such MIP coating and electrode surface and the absence of a direct path for the conduction of electrons from the binding sites to the electrode, the development of electrochemical sensor is significantly restricted. The direct use of MIPs those possess intrinsic electron-transport properties, is highly limited. These problems are resolved by the design of an original, substrate-selective MIP-fiber sensor that combines conventional insulating MIP and conducting carbon powder in consolidated phase. A layer of conducting carbon particles, arranged orderly as 'carbon strip', is inducted in the polymer for direct electronic conduction. MIP-carbon composite (monolithic fiber) in this work is prepared via in situ free radical polymerization of a new monomer (2,4,6-trisacrylamido-1,3,5-triazine, TAT) and subsequent cross-linkage with ethylene glycol dimethacrylate, in the presence of carbon powder and template (folic acid), at 55 degrees C in a glass capillary. The detection of folic acid with the MIP-fiber sensor was found to be specific and quantitative (detection limit 0.20 ng mL(-1), RSD = 1.3%, S/N = 3), in aqueous, blood serum and pharmaceutical samples, without any problem of non-specific false-positive contribution and cross-reactivity.
机译:分子印迹聚合物(MIPs)经常电绝缘材料。的扩散等之间的屏障(s)MIP涂层和电极表面并没有直接电子的传导路径从电极的结合位点,电化学传感器的发展明显受到限制。那些拥有内在电子传递属性,是非常有限的。解决了一个原始的设计,substrate-selective MIP-fiber传感器,结合了传统的绝缘MIP和在巩固阶段进行碳粉。层的导电碳颗粒,安排有序的碳带,是堂聚合物直接电子传导。MIP-carbon复合(单片纤维)工作是准备通过原位自由基新单体的聚合(2,4,6-trisacrylamido-1,3,5-triazine, TAT)和后续的交联与乙二醇利用碳粉的存在和模板(叶酸),在55摄氏度玻璃毛细管。MIP-fiber传感器被发现特定的和定量(检测极限0.20 ng毫升(1),相对标准偏差= 1.3%, S / N = 3),血清和水药品样品,没有任何的问题非特异性假阳性贡献和大。

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