Academy of Scientific and Innovative Research (AcSIR), Council of Scientific and Industrial Research , New Delhi 110001, India.
CSIR-Central Scientific Instruments Organisation , Chandigarh 160030, India.
ACS Appl Mater Interfaces. 2017 Apr 19;9(15):13448-13456. doi: 10.1021/acsami.7b00991. Epub 2017 Apr 6.
This work reports a label-free, ultrasensitive, and selective optical chemosensory system for trace level detection of selenite (SeO), the most toxic form of selenium, in water. The probe, i.e., carbon quantum dots (CQDs), is designed from citric acid by means of pyrolysis and is interfaced with a newly synthesized nitrogen-rich ligand to create a selective sensor platform (functionalized CQDs, fCQDs) for selenite in a water matrix. Spectral (NMR, UV-vis, photoluminescence, Raman, and Fourier transform infrared analyses) and structural (high-resolution transmission electron microscopy) characteristics of the designed new probe were investigated. The developed sensor exhibits high sensitivity (limit of detection = 0.1 ppb), a wide detection range (0.1-1000 ppb range, relative standard deviation: 3.2%), and high selectivity even in the presence of commonly interfering ions reported to date, including Cl, NO, NO, Br, F, As(V), As(III), Cu, Pb, Cd, Zn, Sr, Rb, Na, Ca, Cs, K, Mg, Li, NH, Co, etc. The observed selectivity is due to designed ligand characteristics in terms of strong Se-N chemistry. Ultrafast spectroscopic analysis of the fCQDs in the absence and presence of selenite was studied to understand the sensing mechanism. The sensor was successfully exemplified for real water samples and exhibits comparative performance to conventional ion channel chromatography as well as flame atomic absorption spectroscopy for selenite analysis. The promising results pave ways for realization of a field deployable device based upon a developed probe for selenite quantification in water.
本工作报道了一种用于痕量亚硒酸盐(SeO 检测的无标记、超灵敏和选择性光学化学传感系统,硒的毒性最大的形式,在水中。探针,即碳量子点(CQDs),是通过热解柠檬酸设计的,并与新合成的富氮配体接口,在水基质中为亚硒酸盐创建选择性传感器平台(功能化 CQDs,fCQDs)。对设计的新探针的光谱(NMR、UV-vis、光致发光、拉曼和傅里叶变换红外分析)和结构(高分辨率透射电子显微镜)特性进行了研究。所开发的传感器表现出高灵敏度(检测限=0.1 ppb)、宽检测范围(0.1-1000 ppb 范围,相对标准偏差:3.2%)和高选择性,即使在存在目前报道的常见干扰离子时也是如此,包括 Cl、NO、NO、Br、F、As(V)、As(III)、Cu、Pb、Cd、Zn、Sr、Rb、Na、Ca、Cs、K、Mg、Li、NH、Co 等。观察到的选择性是由于设计的配体在强 Se-N 化学方面的特性所致。研究了 fCQDs 在不存在和存在亚硒酸盐的情况下的超快光谱分析,以了解传感机制。该传感器已成功用于实际水样,并表现出与传统离子通道色谱法和火焰原子吸收光谱法相当的性能,用于亚硒酸盐分析。有前途的结果为基于开发的探针在水中定量硒酸盐的现场可部署设备的实现铺平了道路。