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首页> 外文期刊>Nanotechnology >Stable and sensitive flow-through monitoring of phenol using a carbon nanotube based screen printed biosensor.
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Stable and sensitive flow-through monitoring of phenol using a carbon nanotube based screen printed biosensor.

机译:使用基于碳纳米管的丝网印刷生物传感器对苯酚进行稳定而灵敏的流通监测。

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摘要

A stable and sensitive biosensor for phenol detection based on a screen printed electrode modified with tyrosinase, multiwall carbon nanotubes and glutaraldehyde is designed and applied in a flow injection analytical system. The proposed carbon nanotube matrix is easy to prepare and ensures a very good entrapment environment for the enzyme, being simpler and cheaper than other reported strategies. In addition, the proposed matrix allows for a very fast operation of the enzyme, that leads to a response time of 15 s. Several parameters such as the working potential, pH of the measuring solution, biosensor response time, detection limit, linear range of response and sensitivity are studied. The obtained detection limit for phenol was 0.14 x 10(-6) M. The biosensor keeps its activity during continuous FIA measurements at room temperature, showing a stable response (RSD 5%) within a two week working period at room temperature. The developed biosensor is being applied for phenol detection in seawater samples and seems to be a promising alternative for automatic control of seawater contamination. The developed detection system can be extended to other enzyme biosensors with interest for several other applications.
机译:基于酪氨酸酶,多壁碳纳米管和戊二醛修饰的丝网印刷电极,设计了一种稳定,灵敏的苯酚检测生物传感器,并将其应用于流动注射分析系统。所提出的碳纳米管基质易于制备,并确保了酶的良好包封环境,比其他已报道的策略更简单,更便宜。另外,所提出的基质允许酶非常快速地操作,这导致15 s的响应时间。研究了几个参数,例如工作电位,测量溶液的pH,生物传感器响应时间,检测极限,响应的线性范围和灵敏度。获得的苯酚检出限为0.14 x 10(-6)M。该生物传感器在室温下连续FIA测量期间保持其活性,在室温下两周的工作时间内显示出稳定的响应(RSD 5%)。研发的生物传感器正用于海水样品中的苯酚检测,似乎是自动控制海水污染的有前途的替代方法。所开发的检测系统可以扩展到其他酶生物传感器感兴趣的其他几种应用中。

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