Kokab Tayyaba, Shah Afzal, Nisar Jan, Khan Asad Muhammad, Khan Sher Bahadar, Shah Aamir Hassan
Department of Chemistry, Quaid-i-Azam University, Islamabad 45320, Pakistan.
Department of Chemistry, College of Science, University of Bahrain, Sakhir 32038, The Kingdom of Bahrain.
ACS Omega. 2020 Apr 22;5(17):10123-10132. doi: 10.1021/acsomega.0c00760. eCollection 2020 May 5.
A -[(Benzyloxy)carbonyl]-l-alanyl-l-prolyl-l-leucine--cyclohexylcyclohexanamine (Cbz-APL) tripeptide-coated glassy carbon electrode (GCE)-based sensor was used for sensitive and selective recognition of cadmium ions in environmental water. Detailed cyclic voltammetric and electrochemical impedance spectroscopic studies were performed to investigate the charge transfer and sensing activity of the developed electrochemical sensor. Square wave anodic stripping voltammetry (SWASV) was employed to further investigate the sensitivity, selectivity, validity, and applicability of the developed sensor. A sharp electrochemical signal of oxidized Cd at -0.84 V Ag/AgCl provides evidence for the higher sensing ability of Cbz-APL/GCE than bare GCE at -0.79 V. Moreover, on Cbz-APL/GCE, extraordinary low detection limits of 4.34 fM and linearity range of 15 nM to 0.1 pM with coefficients of correlation higher than 0.99 for Cd were achieved. Besides, the influence of inorganic and organic interferents on the targeted analyte signals was examined, and high selectivity of Cbz-APL/GCE for Cd ions was observed. Lastly, the validity and applicability of the developed electrochemical sensor for the detection of Cd ions were checked in real water samples, and 100% recovery was obtained.
一种基于A -[(苄氧基)羰基]-L-丙氨酰-L-脯氨酰-L-亮氨酸--环己基环己胺(Cbz-APL)三肽包覆玻碳电极(GCE)的传感器用于灵敏且选择性地识别环境水中的镉离子。进行了详细的循环伏安法和电化学阻抗谱研究,以考察所开发的电化学传感器的电荷转移和传感活性。采用方波阳极溶出伏安法(SWASV)进一步研究所开发传感器的灵敏度、选择性、有效性和适用性。在 -0.84 V(相对于Ag/AgCl)处氧化镉的尖锐电化学信号证明了Cbz-APL/GCE在 -0.79 V时比裸GCE具有更高的传感能力。此外,在Cbz-APL/GCE上,镉的检测限低至4.34 fM,线性范围为15 nM至0.1 pM,相关系数高于0.99。此外,考察了无机和有机干扰物对目标分析物信号的影响,观察到Cbz-APL/GCE对镉离子具有高选择性。最后,在实际水样中检验了所开发的电化学传感器检测镉离子的有效性和适用性,回收率达100%。