School of Chemistry, Sun Yat-sen University, Guangzhou, China.
Luminescence. 2022 Aug;37(8):1290-1299. doi: 10.1002/bio.4295. Epub 2022 Jun 6.
In recent years, fluorescent organic-inorganic hybrid nanomaterials have received much interest as potential fluorescent sensor materials. In this study, fluorescent organic-inorganic hybrid nanomaterials (POSS@ANT) were created using polyhedral oligomeric silsesquioxane as the precursor and 9,10-bromoanthracene as the monomer. The morphology and composition of POSS@ANT, as well as its pore characteristics and fluorescence properties were studied. POSS@ANT displayed steady fluorescence emission at an excitation wavelength of 374 nm. Next, a β-carotene fluorescence sensor was developed using the capacity of β-carotene to quench the fluorescence of POSS@ANT. The quenching process is linked to acceptor electron transfer and energy transfer, and the sensor has a high selectivity for β-carotene. This β-carotene fluorescence analysis method that we established has a linear range of 0.2-4.3 mg/L and a detection limit of 0.081 mg/L. Finally, it was used to quantify β-carotene in health products, the recovery rate was 91.1-109.9%, the relative standard deviation (RSD) was 2.2-4.3%, and the results were comparable with the results of high-performance liquid chromatography. The approach is reliable and can be used to determine β-carotene in health products.
近年来,荧光有机-无机杂化纳米材料作为潜在的荧光传感器材料受到了广泛关注。本研究以多面体低聚倍半硅氧烷为前驱体,9,10-溴蒽为单体,制备了荧光有机-无机杂化纳米材料(POSS@ANT)。研究了 POSS@ANT 的形貌和组成、孔特征和荧光性能。POSS@ANT 在 374nm 的激发波长下显示出稳定的荧光发射。接下来,利用β-胡萝卜素对 POSS@ANT 荧光的猝灭能力,开发了一种β-胡萝卜素荧光传感器。猝灭过程与受体电子转移和能量转移有关,该传感器对β-胡萝卜素具有高选择性。我们建立的这种β-胡萝卜素荧光分析方法的线性范围为 0.2-4.3mg/L,检测限为 0.081mg/L。最后,将其用于保健品中β-胡萝卜素的定量分析,回收率为 91.1-109.9%,相对标准偏差(RSD)为 2.2-4.3%,与高效液相色谱法的结果相当。该方法可靠,可用于保健品中β-胡萝卜素的测定。