Department of Chemistry, Physical and Theoretical Chemistry Laboratory, University of Oxford, South Parks Road, Oxford OX1 3QZ, UK.
Analyst. 2012 May 7;137(9):2054-62. doi: 10.1039/c2an16261j. Epub 2012 Mar 15.
Carbon black (CB) nanoparticles modified with fluorescein, a highly fluorescent molecule, were prepared using a facile and efficient methodology. Simply stirring CB in aqueous solution containing fluorescein resulted in the strong physisorption of fluorescein onto the CB surface. The resulting Fluorescein/CB was then characterised by means of X-ray photoelectron spectroscopy (XPS), cyclic voltammetry (CV), fluorescence microscopy and fluorescence spectroscopy. The optimum experimental conditions for fluorescence of Fluorescein/CB viz. fluorescence excitation and emission wavelengths, O(2) removal and the amount of Fluorescein/CB used, were investigated. The Fluorescein/CB was used as a fluorescent probe for the sensitive detection of Pd(II) in water, based on fluorescence quenching. The results demonstrated that the fluorescence intensity of Fluorescein/CB decreased with increasing Pd(II) concentration, and the fluorescence quenching process could be described by the Stern-Volmer equation. The limit of detection (LOD) for the fluorescence quenching of Fluorescein/CB by Pd(II) in aqueous solution was found to be 1.07 μM (based on 3σ). Last, approaches were studied for the removal of Fe(III) which interferes with the fluorescence quenching of Fluorescein/CB. Complexation of Fe(III) with salicylic acid was used to enhance and control the selectivity of Fluorescein/CB sensor towards Pd(II) in the presence of Fe(III).
用一种简单高效的方法制备了用荧光素修饰的碳黑(CB)纳米粒子,荧光素是一种高荧光分子。只需将 CB 在含有荧光素的水溶液中搅拌,即可将荧光素强烈物理吸附到 CB 表面。所得的荧光素/CB 随后通过 X 射线光电子能谱(XPS)、循环伏安法(CV)、荧光显微镜和荧光光谱进行了表征。研究了荧光素/CB 荧光的最佳实验条件,即荧光激发和发射波长、O(2)去除和荧光素/CB 的用量。基于荧光猝灭,将荧光素/CB 用作水中 Pd(II)的灵敏检测荧光探针。结果表明,随着 Pd(II)浓度的增加,荧光素/CB 的荧光强度降低,荧光猝灭过程可以用 Stern-Volmer 方程描述。在水溶液中,荧光素/CB 被 Pd(II)荧光猝灭的检测限(LOD)被发现为 1.07 μM(基于 3σ)。最后,研究了去除 Fe(III)的方法,因为 Fe(III)会干扰荧光素/CB 的荧光猝灭。用水杨酸与 Fe(III)络合,以增强和控制荧光素/CB 传感器对 Pd(II)的选择性。