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Ratiometric Electrochemical Sensor for Selective Monitoring of Cadmium Ions Using Biomolecular Recognition

机译:利用生物分子识别选择性监测镉离子的比例电化学传感器

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A selective, accurate, and sensitive method for monitoring of cadmium ions (Cd~(2+)) based on a ratiometric electrochemical sensor was developed, by simultaneously modifying with protoporphyrin IX and 6-(ferroceney) hexanethiol (FcHT) on Au particle-deposited glassy carbon electrode. On the basis of high affinity of biomolecular recognition between protoporphyrin IX and Cd~(2+), the functionalized electrode showed high selectivity toward Cd~(2+) over other metal ions such as Cu~(2+), Fe~(3+), Ca~(2+), and so on. Electroactive FcHT played the role as the inner reference element to provide a built-in correction, thus improving the accuracy for determination of Cd~(2+) in the complicated environments. The sensitivity of the electrochemical sensor for Cd~(2+) was enhanced by ~3-fold through the signal amplification of electrodeposited gold nanoparticles. Accordingly, the present ratiometric method demonstrated high sensitivity, broad linear range from 100 nM to 10 μM, and low detection limit down to 10 nM (2.2 ppb), lower than EPA and WHO guidelines. Finally, the ratiometric electrochemical sensor was successfully applied in the determination of Cd~(2+) in water samples, and the obtained results agreed well with those obtained by the conventional ICP-MS method.
机译:通过同时用原卟啉IX和6-(二茂铁)己硫醇(FcHT)修饰Au颗粒-上的比例电化学传感器,开发了一种选择性,准确,灵敏的镉离子监测方法(Cd〜(2+))。沉积的玻碳电极。基于原卟啉IX与Cd〜(2+)的生物分子识别的高亲和力,功能化电极对Cud(2 +),Fe〜(3)等金属离子表现出对Cd〜(2+)的高选择性。 +),Ca〜(2+)等。电活性FcHT充当内部参考元素以提供内置校正,从而提高了在复杂环境中测定Cd〜(2+)的准确性。通过电沉积金纳米粒子的信号放大,电化学传感器对Cd〜(2+)的灵敏度提高了约3倍。因此,本比例法显示出高灵敏度,从100 nM到10μM的宽线性范围以及低至10 nM(2.2 ppb)的低检测限,低于EPA和WHO指南。最终,该比例电化学传感器成功应用于水样中Cd〜(2+)的测定,其结果与常规ICP-MS方法相吻合。

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