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Design of novel and modified dual optode membrane based on carbon dots for both ultratrace copper(II) and cobalt(II): derivative spectrophotometric and central composite design study

机译:基于铜铜(II)和钴(II)碳点的新型和改性双光电膜设计:衍生分光光度法和中央复合设计研究

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摘要

A selective, accurate and highly sensitive optical chemical sensor (optode) for the simultaneous determination of copper(II) and cobalt(II) without any prior separation or purification ion sensing was developed. The optode was designed by incorporating carbon dots (CDs) and N0-(2-hydroxy-5iodobenzylidene) isonicotinohydrazide (HIBIN) in plasticized polyvinyl chloride. The membrane composition, such as the ionophore, ionic additive and plasticizer/immobilizer mass ratio, was optimized by central composite design (CCD). Overlaps between the spectra of copper(II) and cobalt(II) complexes were eliminated via a second-derivative zero-crossing spectrophotometric method. The constructed membrane was characterized by field emission scanning electron microscopy (FE-SEM) and atomic force microscopy (AFM). The synthesized CDs were investigated via FE-SEM, X-ray diffraction (XRD) and Fourier transform infrared spectroscopy (FT-IR) analyses. Cross-sectional SEM images showed that the average thickness of the prepared thin film membrane was 306.6 nm. The proposed optical sensor displayed a calibration response for Cu(II) and Co(II) ions over concentration ranges of 9.23 x 10(-8) to 1.08 x 10(-5) M, with a limit of detection of 28.1 nM, and 2.36 x 10(-7) to 1.03 x 10(-5) M, with a limit of detection of 13 nM, respectively, whereas its response time for both ions was determined to be 4.5 min. The stability, reproducibility, regenerability and repeatability of the proposed optical sensor were studied, which revealed good results. The proposed optical sensor was employed successfully for the simultaneous determination of Cu(II) and Co(II) ions in various water samples.
机译:用于同时测定铜(II)和钴(II)的选择性,精确且高灵敏度的光学化学传感器(光电极),而没有任何先前的分离或纯化离子传感。通过将碳点(Cds)和N0-(2-羟基 - 5-碘苄基)在塑化的聚氯乙烯中掺入碳点(Cds)和NO-(2-羟基 - 5-碘苄基)的邻接光电子设计。通过中央复合设计(CCD)优化了膜组合物,例如离子载体,离子添加剂和增塑剂/固定质量比。通过第二衍生零交叉分光光度法消除铜(II)和钴(II)复合物之间的重叠。由现场发射扫描电子显微镜(Fe-SEM)和原子力显微镜(AFM)的特征在于构造的膜。通过Fe-SEM,X射线衍射(XRD)和傅立叶变换红外光谱(FT-IR)分析来研究合成的CD。横截面SEM图像显示制备的薄膜膜的平均厚度为306.6nm。所提出的光学传感器显示出Cu(II)和Co(II)离子在9.23×10(-8)至1.08×10(-5)m的浓度范围内的Cu(II)和Co(II)离子的校准响应,其检测限为28.1nm, 2.36×10(-7)至1.03×10(-5)m,分别有13nm的检测限,而对两个离子的响应时间测定为4.5分钟。研究了所提出的光学传感器的稳定性,再现性,再生性和可重复性,揭示了良好的效果。所提出的光学传感器成功地用于同时测定各种水样中的Cu(II)和CO(II)离子。

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