Frag Eman Yossri, Mohamed Nourhan Mahmoud, Elashery Sally E A
Chemistry Department, Faculty of Science, Cairo University, Gamaa Str., 12613, Giza, Egypt.
Chemistry Department, Faculty of Science, Cairo University, Gamaa Str., 12613, Giza, Egypt.
Anal Chim Acta. 2021 Apr 15;1154:338322. doi: 10.1016/j.aca.2021.338322. Epub 2021 Feb 16.
Herein, for the first time, o-benzoyl benzoic acid has been explored as a promising electroactive material for the fabrication of sensitive, precise and accurate carbon paste electrode (CPE) for selective detection of Cr (III) ion. o-benzoyl benzoic acid (o-BBA) as a sensing material and tricresylphosphate (TCP) as a solvent mediator improved the developed sensor performance to get the Nernstian cationic slope of 20.03 ± 0.11 mV decade within the concentration range of 5.0 × 10-1.0 × 10 mol L. The sensor displayed a fast response time of 12 s reflecting a pH independency over the pH range of 3.1-4.7. Moreover, the reaction between the sensing material and Cr (III) ion on the developed sensor surface was elucidated using the microscopic technique such as scanning electron microscope (SEM) in addition to the energy dispersive X-ray analyzer (EDX). The proposed sensor showed an adequate shelf lifetime (∼33 days). The values of potentiometric selectivity coefficient were obtained by fixed interference and separate solution methods affirming a high distinguishing power of the fabricated sensor toward Cr (III) ions over the other interfering ions. The established sensor could be utilized with a promising success for the Cr (III) ion estimation in the industrial waste water and in the pharmaceutical forms. Additionally, it has been employed as a promising indicator sensor with a superior performance for potentiometric titration of Cr (III) ion against EDTA.
在此,首次探索了邻苯甲酰苯甲酸作为一种有前景的电活性材料,用于制备灵敏、精确且准确的碳糊电极(CPE),以选择性检测Cr(III)离子。以邻苯甲酰苯甲酸(o - BBA)作为传感材料,磷酸三甲苯酯(TCP)作为溶剂介质,改善了所开发传感器的性能,使其在5.0×10⁻¹.0×10 mol L的浓度范围内能获得20.03±0.11 mV/decade的能斯特阳离子斜率。该传感器响应时间快速,为12 s,在3.1 - 4.7的pH范围内表现出与pH无关的特性。此外,除了能量色散X射线分析仪(EDX)外,还使用扫描电子显微镜(SEM)等微观技术阐明了传感材料与所开发传感器表面上的Cr(III)离子之间的反应。所提出的传感器显示出足够的保质期(约33天)。通过固定干扰和分别溶液法获得电位选择性系数值,证实了所制备的传感器对Cr(III)离子相对于其他干扰离子具有高分辨能力。所建立的传感器可成功用于工业废水和药物制剂中Cr(III)离子的测定。此外,它还被用作一种有前景的指示传感器,在以EDTA电位滴定Cr(III)离子时具有优异性能。