Development of an innovative optical sensor to detect extremely low levels of chromium in real samples using colorimetric methods

IF 3.5 Q3 ENGINEERING, ENVIRONMENTAL
Eman R. Darwish, Reem F. Alshehri, Alaa S. Amin and Mai Aish
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Abstract

The investigation focused on a methodology for concentrating and analyzing Cr(VI) in aqueous samples. This objective was accomplished through the creation of a cellulose triacetate (CTA) matrix-based membrane optode. This optode was constructed by physically integrating a specific chromophore, 1,3-benzenediamine,N,N′-bis(2-furanylmethylene) (BDBFM), known for its selectivity towards Cr(VI), alongside the plasticizer dioctylphthalate (DOP). The effectiveness of integrating Aliquat 336, an anion exchanger, was evaluated in the process of immobilizing both BDBFM and the Cr(VI)–BDBFM complex within the optode matrix. The progressive intensification of the violet color observed on the optodes, directly correlating with the amount of loaded Cr(VI), highlights the potential of this method for colorimetric screening of Cr(VI) in aqueous samples. The developed optode was also employed for the determination of the total chromium content by converting Cr(III) to Cr(VI) via oxidation using 0.1 M hydrogen peroxide. The concentration of Cr(III) can be quantified by subtracting the amount of Cr(VI) from the total chromium content. This optode enabled the quantitative detection of Cr(VI), even at levels as low as 2.85 ng mL−1. The suggested sensor displayed a low detection limit, fast response time, cost effectiveness, ease of preparation and also remarkable selectivity regarding some anions and cations. Regeneration of the optode can be easily accomplished by employing 0.05 M HNO3, while demonstrating remarkable reproducibility and reversibility in its response, with a relative standard deviation (RSD) below 1.9. The suggested method was effectively utilized to measure chromium levels in a diverse range of samples, such as food, water, and environmental, and biological samples.

Abstract Image

开发创新型环保光学传感器,利用比色法检测实际样品中极低含量的铬
调查的重点是浓缩和分析水样中六价铬的方法。这一目标是通过创建一种基于三醋酸纤维素基质的膜光电二极管来实现的。在将 BDBFM 和 Cr(VI)-BDBFM 复合物固定在光耦合器基质中的过程中,评估了阴离子交换剂 Aliquat 336 的有效性。通过使用 0.1 M 过氧化氢进行氧化,将 Cr(III) 转化为 Cr(VI),从而测定总铬含量。从总铬含量中减去铬(VI)的量,就能定量测定铬(III)的浓度。这种光电二极管能定量检测铬(VI),即使在低至 2.85 纳克/毫升-1 的低浓度下也是如此。使用 0.05 M HNO3 就能轻松实现光电二极管的再生,同时其响应具有显著的重现性和可逆性,相对标准偏差(RSD)低于 1.9。所建议的方法被有效地用于测量食品、水、环境和生物等多种样品中的铬含量。
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CiteScore
1.90
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