Department of Chemistry, Yadegar-e-Imam Khomeini (RAH) Shahre Rey Branch, Islamic Azad University, Tehran, Iran.
Anal Methods. 2023 Mar 16;15(11):1431-1440. doi: 10.1039/d2ay01601j.
The present study deals with synthesis of -(thiazol-2-ylcarbamothioyl) benzamide. It was utilized as a neutral ionophore for designing three types of chromium(III) sensors including coated wire ion selective electrodes (CW-ISEs), ion selective electrodes with liquid internal electrolyte (LIE-ISEs), and solid-state ion selective electrodes (SS-ISEs). UV-visible spectrophotometry was used to confirm the affinity of -(thiazol-2-ylcarbamothioyl) benzamide to chromium(III). It was found that a membrane with a composition of 2% NaTPB, 8% ionophore, 60% DBP, and 30% PVC showed the best performance and a Nernstian slope of 21.6 mV per decade. Scanning electron microscopy was used to assess the PVC membrane morphology. The existence of chromium(III) in the liquid membrane matrix was proved by energy-dispersive X-ray spectroscopy. Detection limits for SS-ISE (1 × 10 M) and CW-ISE (1 × 10 M) were enhanced relative to LIE-ISE (1 × 10 M). All three electrodes showed a response time of about 5 s. The sensors' applicable pH range was 4.0-6.0. Fourier transform infrared spectra recorded through the electrode membrane showed that chromium(III) ion can interact with sulfur, nitrogen and oxygen atoms of -(thiazol-2-ylcarbamothioyl) benzamide. The sensors were utilized as indicator electrodes in chromium(III) potentiometric titration with ethylenediaminetetraacetic acid and for directly measuring chromium(III) in some pharmaceutical samples.
本研究涉及 -(噻唑-2-基氨基甲硫基)苯甲酰胺的合成。它被用作设计三种类型的铬(III)传感器的中性离子载体,包括涂覆丝离子选择性电极 (CW-ISE)、带有液体内部电解质的离子选择性电极 (LIE-ISE) 和固态离子选择性电极 (SS-ISE)。紫外可见分光光度法用于确认 -(噻唑-2-基氨基甲硫基)苯甲酰胺与铬(III)的亲和力。结果发现,组成成分为 2% NaTPB、8%离子载体、60% DBP 和 30% PVC 的膜具有最佳性能,其斜率为每十年 21.6 mV。扫描电子显微镜用于评估 PVC 膜的形态。能量色散 X 射线光谱证明了铬(III)存在于液体膜基质中。与 LIE-ISE(1×10 M)相比,SS-ISE(1×10 M)和 CW-ISE(1×10 M)的检测限得到了提高。所有三个电极的响应时间约为 5 秒。传感器的适用 pH 范围为 4.0-6.0。通过电极膜记录的傅里叶变换红外光谱表明,铬(III)离子可以与 -(噻唑-2-基氨基甲硫基)苯甲酰胺的硫、氮和氧原子相互作用。这些传感器可用作铬(III)与乙二胺四乙酸的电位滴定中的指示电极,以及直接测量一些药物样品中的铬(III)。