首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Highly sensitive paper-based electrochemical sensor for reagent free detection of bisphenol A
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Highly sensitive paper-based electrochemical sensor for reagent free detection of bisphenol A

机译:用于试剂自由检测双酚A的高敏感纸电化学传感器

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摘要

Bisphenol A is one the most relevant endocrine disruptors for its toxicity and ubiquity in the environment, being largely employed as raw material for manufacturing processes of a wide number of compounds. Furthermore, bisphenol A is released in the drinking water when plastic-based bottles are incorrectly transported under sunlight, delivering contaminated drinking water. For the health of human beings and the environment, rapid and on site detection of bisphenol A in drinking water is an important issue. Herein, we report a novel and cost-effective printed electrochemical sensor for an enzymatic-free bisphenol A detection. This sensor encompasses the entire electrochemical cell printed on filter paper and the reagents for the measurement loaded in the cellulose fiber network, for delivering a reagent-free analytical tool. The working electrode was printed using ink modified with carbon black, a cost effective nanomaterial for sensitive and sustainable bisphenol A determination. Several parameters including pH, frequency, and amplitude were optimized allowing for a detection limit of 0.03 mu M with two linear ranges 0.1-0.9 mu M and 1 mu M-50 mu M, using square wave voltammetry as electrochemical technique. The satisfactory recovery values found in river and drinking water samples demonstrated the suitability of this sensor for screening analyses in water samples. These results revealed the attractiveness of this paper-based device thanks to the synergic combination of paper and carbon black as cost-effective materials.
机译:双酚A是其毒性和环境中最相关的内分泌破坏剂,其在环境中,主要是用于制造各种化合物的制造过程的原料。此外,当塑料的瓶子在阳光下运输不正确时,双酚A在饮用水中释放,递送受污染的饮用水。对于人类的健康和环境,快速和现场发现双酚A在饮用水中是一个重要问题。在此,我们报告了一种用于酶促双酚的一种新颖且经济有效的印刷电化学传感器。该传感器包括印在滤纸上的整个电化学电池和用于纤维素纤维网络中的测量的试剂,用于递送无试剂的分析工具。使用用炭黑修饰的油墨印刷工作电极,纳米材料的成本效果为敏感和可持续的双酚的测定。多种参数包括pH,频率和幅度,允许使用方波伏安法作为电化学技术的两线性0.03μm和1μm-50μm的检出限。河流和饮用水样品中发现的令人满意的恢复值证明了该传感器在水样中筛选分析的适用性。这些结果表明,由于纸和炭黑的协同组合为具有成本效益,这纸张的设备的吸引力。

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