College of Material and Chemical Engineering, Tongren University, Tongren 554300, Guizhou, PR China; State Key Laboratory Breeding Base of Green Chemistry-Synthesis Technology, College of Chemical Engineering, Zhejiang University of Technology, Hangzhou 310032, PR China.
College of Material and Chemical Engineering, Tongren University, Tongren 554300, Guizhou, PR China.
Spectrochim Acta A Mol Biomol Spectrosc. 2019 Oct 5;221:117212. doi: 10.1016/j.saa.2019.117212. Epub 2019 May 28.
To enhance the power of untargeted detection, a "turn-off" fluorescent probe with double quantum dots (QDs) was developed and coupled with chemometrics for rapid detection of multiple adulterants in an herbal (Rhus chinensis Mill., RCM) honey. The double water-soluble ZnCdSe-CdTe QDs have two separate and strong fluorescent peaks, which can be quenched by honey and extraneous adulterants with varying degrees. Class models of pure RCM honey samples collected from 6 different producing areas (n = 122) were developed using one-class partial least squares (OCPLS). Four extraneous adulterants, including glucose syrup, sucrose syrup, fructose syrup, and glucose-fructose syrup were added to pure honey samples at the levels of 0.5% to 10% (w/w). As a result, the OCPLS model using the second-order derivative (D2) spectra could detect 1.0% (w/w) of different syrups in RCM honey, with a sensitivity of 0.949. The double water-soluble QDs, which can be adjusted for analysis of other water-soluble food samples, has largely extended the capability of traditional fluorescence and will provide a potentially more sensitive and specific analysis method for food frauds.
为了提高非靶向检测的能力,开发了一种带有双量子点(QDs)的“关闭”荧光探针,并与化学计量学相结合,用于快速检测草药(漆树,RCM)蜂蜜中的多种掺杂物。双水溶性 ZnCdSe-CdTe QDs 具有两个独立且强的荧光峰,可被蜂蜜和外来掺杂物不同程度地猝灭。使用单类偏最小二乘法(OCPLS)建立了来自 6 个不同产地(n=122)的纯 RCM 蜂蜜样品的分类模型。将包括葡萄糖浆、蔗糖浆、果葡糖浆和葡萄糖-果葡糖浆在内的四种外来掺杂物以 0.5%至 10%(w/w)的水平添加到纯蜂蜜样品中。结果,使用二阶导数(D2)光谱的 OCPLS 模型可以检测到 RCM 蜂蜜中 1.0%(w/w)的不同糖浆,灵敏度为 0.949。双水溶性 QDs 可用于分析其他水溶性食品样品,大大扩展了传统荧光的能力,为食品欺诈提供了一种更敏感、更特异的分析方法。