Llorent-Martínez Eulogio J, Molina-García Lucía, Durán Gema M, Ruiz-Medina Antonio, Ríos Ángel
Department of Analytical Chemistry and Food Technology, University of Castilla-La Mancha, Av. Camilo José Cela, Ciudad Real E-13071, Spain; Regional Institute for Applied Chemistry Research (IRICA), Camilo José Cela Av., Ciudad Real E-13071, Spain.
Department of Physical and Analytical Chemistry, Faculty of Experimental Sciences, University of Jaén, Campus Las Lagunillas, E-23071 Jaén, Spain.
Spectrochim Acta A Mol Biomol Spectrosc. 2018 Jun 5;198:177-181. doi: 10.1016/j.saa.2018.03.013. Epub 2018 Mar 7.
Graphene quantum dots (GQD) were determined in water samples using terbium-sensitized luminescence (TSL). Terbium ions complex with GQD due to the carboxylic groups that are usually present in these nanomaterials, increasing the luminescence signal of terbium. In Tb(III)-GQD complexes, GQD absorb energy at their characteristic excitation wavelength and transfer it to terbium ion, which emits at its particular emission wavelength. The analytical signal, measured at λ=257nm and λ=545nm, increases proportionally to GQD concentration between 50 and 500μgL. Under optimum conditions, the proposed method presents a detection limit of 15μgL and is selective to GQD in the presence of other nanomaterials of similar size. As GQD are highly water-soluble, they are potential contaminants in environmental or drinking waters water samples, and hence the method was applied to the analysis of different drinking waters which were the target samples for the application of the developed method.
采用铽敏化发光(TSL)法测定水样中的石墨烯量子点(GQD)。由于这些纳米材料中通常存在羧基,铽离子与GQD形成络合物,从而增强了铽的发光信号。在Tb(III)-GQD络合物中,GQD在其特征激发波长处吸收能量并将其转移到铽离子上,铽离子在其特定发射波长处发射。在λ=257nm和λ=545nm处测量的分析信号与50至500μg/L之间的GQD浓度成正比。在最佳条件下,所提出的方法检测限为15μg/L,并且在存在其他尺寸相似的纳米材料时对GQD具有选择性。由于GQD具有高度水溶性,它们是环境或饮用水水样中的潜在污染物,因此该方法被应用于分析不同的饮用水,这些饮用水是所开发方法的目标应用样品。