Aish Mai, Alshehri Reem F, Amin Alaa S
Chemistry Department, Faculty of Science, Port Said University Port Said Egypt
Chemistry Department, College of Science, Taibah University Madina Kingdom of Saudi Arabia.
RSC Adv. 2023 Aug 18;13(35):24777-24788. doi: 10.1039/d3ra04249a. eCollection 2023 Aug 11.
An optical chemical sensor has been developed for the quantitative spectrophotometric analysis of copper. The optode is dependent on covalent immobilization of 2-(2-benzothiazolylazo)-3-hydroxyphenol (BTAHP) in a transparent agarose membrane. The absorbance variation of immobilized BTAHP on agarose as a film upon the addition of 5 × 10 M aqueous solutions of Mn, Zn, Hg, Cd, Pb, Co, Ni, Fe, La, Fe, Cr, Zr, Se, Th, and UO revealed substantially higher changes in the Cu ion content compared to other ions investigated here. The effects of various experimental parameters, such as the solution pH, the reaction time, and the concentration of reagents, on the quality of Cu sensing were examined. Under ideal experimental circumstances, a linear response was achieved for Cu concentrations ranging from 1.0 × 10 to 7.5 × 10 M with an value of 0.9988. The detection (3) and quantification (10) limits of the procedure for Cu analyses were 3.0 × 10 and 9.8 × 10 M, respectively. No observable interference was recorded in the detection of Cu due to other inorganic cations. With no indication of BTAHP leaching, the membrane demonstrated good durability and quick response times. The optode was effectively used to determine the presence of Cu in environmental water, food, and biological samples.
已开发出一种用于铜的定量分光光度分析的光学化学传感器。该光极依赖于将2-(2-苯并噻唑基偶氮)-3-羟基苯酚(BTAHP)共价固定在透明琼脂糖膜中。与本文研究的其他离子相比,在琼脂糖上固定为薄膜的BTAHP在加入5×10 M的Mn、Zn、Hg、Cd、Pb、Co、Ni、Fe、La、Fe、Cr、Zr、Se、Th和UO水溶液时,其吸光度变化显示出铜离子含量的变化明显更高。研究了各种实验参数,如溶液pH值、反应时间和试剂浓度对铜传感质量的影响。在理想的实验条件下,对于浓度范围为1.0×10至7.5×10 M的铜,获得了线性响应, 值为0.9988。铜分析方法的检测限(3)和定量限(10)分别为3.0×10和9.8×10 M。在检测铜时,未观察到由于其他无机阳离子而产生的干扰。由于没有BTAHP浸出的迹象,该膜表现出良好的耐久性和快速响应时间。该光极有效地用于测定环境水、食品和生物样品中铜的存在。