首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >Functionalized graphene oxide GO-[imi-(CH2)(2)-NH2] as a high efficient material for electrochemical sensing of lead: Synthesis surface and electrochemical characterization
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Functionalized graphene oxide GO-[imi-(CH2)(2)-NH2] as a high efficient material for electrochemical sensing of lead: Synthesis surface and electrochemical characterization

机译:官能化的石墨烯氧化物GO-[IMI-(CH2)(2)-NH2]作为铅电化学感测的高效材料:合成表面和电化学表征

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摘要

Recently, many efforts have been widely focused on developing heavy metal ion sensors, particularly Pb (II) sensing due to really dangerous effects towards environment and hygienic issues. To meet the highest productivity of that metal ion sensing, we incorporated functional group of imidazole-(CH2)(2)center dot NH2 on graphene oxide (GO-imi-(CH2)(2)center dot NH2) with large surface area and boosted conductivity. The structure of the as-synthesized GO- imi-(CH2)(2)center dot NH2 was characterized by commonly used techniques. The characterization results confirmed the successful synthesizing strategy of grafting functional GO-imi-(CH2)(2)center dot NH2-CPE surface with reliable Pb(H) sensor. According to ideal conditions, Pb(II) calibration diagram recorder linearly (-0.58 V), between the concentration range of 5.0-300.0 nM. High surface area and strong Pb(II) adsorption ability with welfare conductivity of modified electrode indicated good Pb(H) sensing with a detection limit of 0.30 nM. That electrode provided ease -NH2 groups incorporating to Pb (II) with a good reusability and reproducibility of 5 times and approximately 90%, respectively, Therefore, during the deposition process, Pb accumulation will be risen on the electrode surface. The Pb monitoring in aqueous media was developed through a thoroughly affordable and sensitive electrochemical sensing approach come up with this proposed sensor.
机译:最近,由于对环境和卫生问题的真正危险影响,许多努力广泛聚焦开发重金属离子传感器,特别是PB(II)感测。为了满足该金属离子传感的最高生产力,我们将咪唑-(2)中心点NH2的偶氮氧化物(Go-IMI-(2)中心点NH2)掺入了具有大表面积的咪唑 - (2)中心点NH2的官能团(Go-IMI-(2)中心点NH2)和推动电导率。通过常用的技术表征了如合成的GO-IMI-(CH2)(2)中心点NH2的结构。表征结果证实了具有可靠的PB(H)传感器的嫁接功能Go-IMI-(CH2)(2)中心点NH2-CPE表面的成功合成策略。根据理想条件,PB(ii)校准图记录器线性(-0.58 v),浓度范围为5.0-300.0 nm。高表面积和强的PB(II)改性电极福利导电性的吸附能力表示良好的PB(H)检测,检测限为0.30nm。该电极提供了易用性的-NH2基团,其具有良好的可重用性和再现性为5倍和约90%,因此,在沉积过程中,PB积聚将在电极表面上升。通过彻底实惠的敏感的电化学传感方法开发了水介质中的PB监测,提出了这一提出的传感器。

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