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Development of a Sensitive and Selective Optical Sensor for Measuring Ultra-Trace Amounts of Fe(II)and Fe(III)Ions in Water

机译:开发用于测量水中的Fe(II)和Fe(III)离子的敏感和选择性的光学传感器

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A smart spectrophotometric method for the analytical determination of iron concentration in whichever oxidation state was developed using a novel optical sensor.The optical sensor was prepared by direct immobilization of novel synthesized chromophore,5-(((1,10-phenanthrolin-5-yl)imino)methyl)-2-hydroxybenzoic acid(Phimhb)onto mesoporous silica nanospheres(MSNSs).The novel Phimhb chromophore has two sites,one is selective to Fe(II)ions and the other is selective to Fe(III)ions.The ions'color can be seen with the human eye and monitored using spectrophotometric techniques or a smartphone.The influence of several parameters on the evaluation of iron ions content was studied and optimized.The proposed method was validated in terms of LOD,LOQ,linearity,and precision according to ICH guidelines.The optical Phimhb sensor has wide linear dynamic ranges with low detection limits of 4.94 ppb(1.83×10~(-7)molL~(-1))and 10.4 ppb(3.85× 107 molL~(-1))for Fe(II)and Fe(III),respectively.The response time of this sensor for both ions was 60 s.The Phimhb sensor could be reproduced multiple times and used with a higher capacity each time.The effect of potential interfering ions on the estimation of Fe(II)and Fe(III)was investigated.The outcomes clarified that the prepared Phimhb sensor was very selective to Fe(II)and Fe(III)ions.Therefore,the Phimhb sensor had been successfully used in the determination of Fe(II)and Fe(III)in real water even without any pre-concentration,it has high specificity.
机译:一种使用新型光学传感器开发的氧化态分析测定铁浓度的智能分光光度法方法。光学传感器是通过直接固定新型合成发色团直接固定来制备的。 )imino)甲基)-2-羟基苯甲酸(PHIMHB)上介孔二氧化硅纳米球(MSNSS)。新型PHIMHB发色团具有两个位点,一个位点具有Fe(II)离子,另一种是对Fe(III)离子的选择性。可以用人眼观察离子颜色,并使用分光光度法技术或智能手机进行监测。几个参数对铁离子含量评估的影响进行了研究和优化。根据LOD,LOQ,LINAREARITY验证了该方法,线性性验证和根据ICH指南的精度。光学PHIMHB传感器具有宽线性动态范围,低检测限为4.94 ppb(1.83×10〜(-7)Moll〜(-1))和10.4 ppb(3.85×107 Moll〜(3.85×107 Moll〜( -1))分别为Fe(II)和Fe(III)。这两个离子的该传感器的me均为60 S. PHIMHB传感器可以多次再现并每次都具有更高的能力。潜在干扰离子对Fe(II)和Fe(II)和Fe(III)的影响。结果阐明了准备制备的PHIMHB传感器对Fe(II)和Fe(III)离子非常有选择性。因此,即使没有在没有真正水中的Fe(II)和Fe(III)的测定中,PHIMHB传感器已成功地用于确定。任何预浓缩都具有很高的特异性。

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