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以生物炭纳米颗粒为信号增强剂的电化学酶生物传感器用于水中双酚A的检测

Electrochemical Enzyme Biosensor Bearing Biochar Nanoparticle as Signal Enhancer for Bisphenol A Detection in Water.

作者信息

Liu Yang, Yao Lan, He Lingzhi, Liu Na, Piao Yunxian

机构信息

Key Laboratory of Groundwater Resources and Environment (Jilin University), Ministry of Education, Jilin Provincial Key Laboratory of Water Resources and Environment, College of New Energy and Environment, Jilin University, Changchun 130021, China.

出版信息

Sensors (Basel). 2019 Apr 4;19(7):1619. doi: 10.3390/s19071619.

Abstract

An electrochemical tyrosinase enzyme (Tyr) biosensor using a highly conductive sugarcane derived biochar nanoparticle (BCNP) as a transducer and signal enhancer (BCNPs/Tyr/Nafion/GCE) was developed for the sensitive detection of bisphenol A (BPA). The BCNPs/Tyr/Nafion/GCE biosensor exhibited improved amperometric current responses such as higher sensing signal, decreased impedance and lowered reduction potential compared with the Tyr/Nafion/GCE due to high conductivity property of the biochar nanoparticle. Under the optimized conditions, it could detect BPA in good sensitivity with linear range from 0.02 to 10 μM, and a lowest detection limit of 3.18 nM. Moreover, it showed a low value, high reproducibility and good selectivity over other reagents, and the BCNPs/Tyr complex solution also showed good stability with 86.9% of sensing signal maintained after one month storage. The biosensor was also successfully utilized for real water detection with high accuracy as validated by high performance liquid chromatography. Therefore, the biochar nanoparticle based enzyme biosensor proved to be a potential and reliable method for high performance detection of pollutants in the environment.

摘要

开发了一种电化学酪氨酸酶(Tyr)生物传感器,该传感器使用高导电性的甘蔗衍生生物炭纳米颗粒(BCNP)作为换能器和信号增强剂(BCNPs/Tyr/Nafion/GCE),用于灵敏检测双酚A(BPA)。与Tyr/Nafion/GCE相比,由于生物炭纳米颗粒的高导电性,BCNPs/Tyr/Nafion/GCE生物传感器表现出改善的安培电流响应,如更高的传感信号、更低的阻抗和更低的还原电位。在优化条件下,它能以良好的灵敏度检测BPA,线性范围为0.02至10μM,最低检测限为3.18 nM。此外,它具有较低的值、高重现性以及对其他试剂的良好选择性,并且BCNPs/Tyr复合溶液在储存一个月后也表现出良好的稳定性,传感信号保持86.9%。经高效液相色谱验证,该生物传感器还成功用于实际水样检测,具有高准确性。因此,基于生物炭纳米颗粒的酶生物传感器被证明是一种用于环境中污染物高性能检测的潜在且可靠的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8eb9/6479578/24d987481978/sensors-19-01619-sch001.jpg

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