Department of Physics, Jadavpur University, Kolkata-700032, India.
Department of Life Science and Biotechnology, Jadavpur University, Kolkata-700032, India.
J Fluoresc. 2022 Jul;32(4):1489-1500. doi: 10.1007/s10895-022-02962-x. Epub 2022 May 3.
This article reports the fluorometric detection of toxic hexavalent chromium Cr (VI)) in wastewater and Cr (VI) contaminated living cells using in-situ grown carbon quantum dots into the goethite (α-FeOOH) nano-matrix. The synthesized nano-hybrid shows enormous potential in determining the chromium contamination levels in various types of water samples. This selective fluorometric probe is enormously sensitive (LOD 81 nM) toward hexavalent chromium, which makes it a dedicated chromium sensor. Moreover, the sensing mechanism has been assessed using Stern-Volmer's equation and fluorescence lifetime experiments showing the simultaneous occurrence of photoinduced electron transfer and the inner filter effect. This chromium sensor has also been employed to assess the contamination level in real-life industrial wastewater. The performance of this probe in a real-life wastewater sample is quite commendable. Further, this biocompatible fluorometric probe has been used to demonstrate the in-vitro sensing of Cr (VI) in HeLa cells. The rapid detection mechanism of hexavalent chromium in living cells has been validated using theoretical docking simulations. Henceforth, this fluorometric sensor material could open new avenues not only in wastewater monitoring but also in biomedical applications.
本文报道了利用原位生长的碳量子点进入针铁矿(α-FeOOH)纳米基质中,对废水中的有毒六价铬 Cr(VI)和 Cr(VI)污染的活细胞进行荧光检测。所合成的纳米杂化材料在测定各种类型水样中的铬污染水平方面具有巨大的潜力。这种选择性荧光探针对六价铬具有极高的灵敏度(LOD 81 nM),是一种专用的铬传感器。此外,还通过 Stern-Volmer 方程和荧光寿命实验评估了传感机制,表明光诱导电子转移和内滤效应同时发生。该铬传感器还用于评估实际工业废水中的污染水平。该探针在实际废水样品中的性能相当出色。此外,这种生物相容性荧光探针还用于在 HeLa 细胞中证明 Cr(VI)的体外传感。已经使用理论对接模拟验证了活细胞中六价铬的快速检测机制。因此,这种荧光传感器材料不仅可以开辟废水监测领域的新途径,还可以开辟生物医学应用领域的新途径。