School of Life Science and Health Engineering, School of Chemical and Material Engineering, Jiangnan University, Wuxi, 214122, China.
Mikrochim Acta. 2023 Jun 30;190(7):278. doi: 10.1007/s00604-023-05841-9.
The boron-doped graphene quantum dot (HSE-GQD-B) was prepared by thermal pyrolysis of the mixture of citric acid, histidine, serine and ethylenediamine and boric acid. The resulting HSE-GQD-B is composed of tiny graphene sheets with an average sheet size of 4.2 ± 0.16 nm and exhibits an excitation-depended fluorescence emission behavior. The HSE-GQD-B produces the strongest blue fluorescence of 450 nm wavelength under the excitation of 365-nm ultraviolet light and the strongest yellow fluorescence of 550-nm wavelength under the excitation of 470-nm visible light. The interaction of HSE-GQD-B with oxytetracycline molecule induces a sensitive blue fluorescence quenching process. Based on this characteristic, a fluorescence method was established for optical detection of oxytetracycline. The analytical method offers a better sensitivity, selectivity, and repeatability compared with previously reported methods. The detection of oxytetracycline attains a wide linear range of 0.02-50 μM and a detection limit of 0.0067 μM. It has been successfully applied to fluorescence detection of oxytetracycline in food samples. In addition, the HSE-GQD-B was also used as a multicolor fluorescence probe for information encryption patterns.
硼掺杂石墨烯量子点(HSE-GQD-B)是通过柠檬酸、组氨酸、丝氨酸和乙二胺与硼酸混合物的热解制备的。所得的 HSE-GQD-B 由微小的石墨烯片组成,平均片层尺寸为 4.2 ± 0.16nm,并表现出激发依赖的荧光发射行为。在 365nm 紫外光激发下,HSE-GQD-B 产生最强的 450nm 波长的蓝光荧光,在 470nm 可见光激发下产生最强的 550nm 波长的黄光荧光。HSE-GQD-B 与土霉素分子的相互作用诱导了敏感的蓝光荧光猝灭过程。基于这一特性,建立了一种用于检测土霉素的荧光方法。与以前报道的方法相比,该分析方法具有更好的灵敏度、选择性和重现性。土霉素的检测达到了 0.02-50μM 的宽线性范围和 0.0067μM 的检测限。它已成功应用于食品样品中土霉素的荧光检测。此外,HSE-GQD-B 还被用作多色荧光探针用于信息加密模式。