Department of Industrial Engineering, University of Rome Tor Vergata, 00133 Rome, Italy.
Department of Mechanical Engineering of Biosystems, Agriculture Faculty, Urmia University, Urmia 5756151818, Iran.
Sensors (Basel). 2021 Sep 23;21(19):6353. doi: 10.3390/s21196353.
Water pollution caused by hexavalent chromium (Cr(VI)) ions represents a serious hazard for human health due to the high systemic toxicity and carcinogenic nature of this metal species. The optical sensing of Cr(VI) through specifically engineered nanomaterials has recently emerged as a versatile strategy for the application to easy-to-use and cheap monitoring devices. In this study, a one-pot oxidative method was developed for the cage opening of C fullerene and the synthesis of stable suspensions of N-doped carbon dots in water-THF solutions (N-CDs-W-THF). The N-CDs-W-THF selectively showed variations of optical absorbance in the presence of Cr(VI) ions in water through the arising of a distinct absorption band peaking at 550 nm, i.e., in the transparency region of pristine material. Absorbance increased linearly, with the ion concentration in the range 1-100 µM, thus enabling visual and ratiometric determination with a limit of detection (LOD) of 300 nM. Selectivity and possible interference effects were tested over the 11 other most common heavy metal ions. The sensing process occurred without the need for any other reactant or treatment at neutral pH and within 1 min after the addition of chromium ions, both in deionized and in real water samples.
六价铬 (Cr(VI)) 离子造成的水污染对人类健康构成严重危害,因为这种金属物种具有高系统性毒性和致癌性。通过专门设计的纳米材料对 Cr(VI) 的光学感应最近成为一种多功能策略,可应用于易于使用和廉价的监测设备。在这项研究中,开发了一种一锅氧化法,用于 C60 富勒烯的笼开口和在水-THF 溶液中的掺氮碳点的稳定悬浮液(N-CDs-W-THF)的合成。N-CDs-W-THF 在水中存在 Cr(VI) 离子时选择性地表现出光学吸收的变化,通过在 550nm 处出现明显的吸收带,即原始材料的透明区域来实现。吸收随离子浓度在 1-100µM 范围内线性增加,从而能够进行可视化和比色测定,检测限 (LOD) 为 300nM。在 11 种其他常见重金属离子上测试了选择性和可能的干扰效应。在中性 pH 值下,无需任何其他反应物或处理,并且在加入铬离子后 1 分钟内,在去离子和实际水样中均发生了传感过程。