Residues and Resource Reclamation Centre (R3C), Nanyang Environment and Water Research Institute, Nanyang Technological University, 1 Cleantech Loop, Clean Tech One, 637141, Singapore.
Residues and Resource Reclamation Centre (R3C), Nanyang Environment and Water Research Institute, Nanyang Technological University, 1 Cleantech Loop, Clean Tech One, 637141, Singapore.
Chemosphere. 2021 Oct;281:130880. doi: 10.1016/j.chemosphere.2021.130880. Epub 2021 May 15.
The oxidation state of ions is a crucial aspect that often has been overlooked when determining the toxicity of chromium (Cr) species in environmental samples. In this study, a novel electrochemical sensor array based on gold-silver nanoparticles modified electrodes was developed for simultaneous determination of the two main chromium species (Cr(III) and (VI)). Specifically, the working electrodes of screen-printed carbon electrodes (SPCEs) were modified with silver-gold bimetallic nanoparticles through electrochemical deposition for detection of Cr(VI). The silver-gold bimetallic nanoparticles were further oxidized to form stable silver-gold bimetallic oxide nanoparticles for the detection of Cr(III). The results showed that the addition of silver with a theoretical value of 1% of gold could contribute to the formation and stabilization of oxides on the surface of gold nanoparticles. After characterization, the two kinds of electrodes were integrated as an electrochemical sensor array for selective and sensitive detection of Cr(VI) and Cr(III). The linear range and limit of detection (LOD, identified by three times of signal-to-noise ratio) were found to be 0.05-5 ppm and 0.1 ppb for Cr(VI), and 0.05-1 ppm and 0.1 ppb for Cr(III), respectively. Finally, the electrochemical sensor array was proven for successful detection of Cr(VI) and Cr(III) in tap water, artificial saliva and artificial sweat samples, and monitoring of Cr(VI) and Cr(III) in chromium-containing wastewater treatment process. Combined with a handheld dual-channel electrochemical device, the simultaneous determination of Cr(VI), Cr(III) and total chromium contents can be easily achieved for various samples.
离子的氧化态是确定环境样品中铬(Cr)物种毒性时经常被忽视的一个关键方面。在这项研究中,开发了一种基于金-银纳米粒子修饰电极的新型电化学传感器阵列,用于同时测定两种主要的铬物种(Cr(III)和(VI))。具体来说,通过电化学沉积在丝网印刷碳电极(SPCE)的工作电极上修饰银-金双金属纳米粒子,用于检测 Cr(VI)。银-金双金属纳米粒子进一步被氧化形成稳定的银-金双金属氧化物纳米粒子,用于检测 Cr(III)。结果表明,添加理论值为 1%的银有助于金纳米粒子表面氧化物的形成和稳定。经过表征,将两种电极集成作为电化学传感器阵列,用于 Cr(VI)和 Cr(III)的选择性和灵敏检测。发现 Cr(VI)的线性范围和检测限(LOD,通过三倍信噪比确定)分别为 0.05-5 ppm 和 0.1 ppb,Cr(III)的线性范围和检测限分别为 0.05-1 ppm 和 0.1 ppb。最后,电化学传感器阵列成功地用于检测自来水中、人工唾液和人工汗水中的 Cr(VI)和 Cr(III),并监测含铬废水处理过程中 Cr(VI)和 Cr(III)的变化。结合手持式双通道电化学装置,可轻松实现各种样品中 Cr(VI)、Cr(III)和总铬含量的同时测定。