School of Chemistry and Chemical Engineering, University of Jinan, Jinan 250022, China.
Analyst. 2010 Jan;135(1):111-5. doi: 10.1039/b915622d. Epub 2009 Nov 6.
A novel fluorescent nanosensor for Sb(3+) determination was reported based on thioglycolic acid (TGA)-capped CdTe quantum dot (QD) nanoparticles. It was the first antimony ion sensor using QD nanoparticles in a receptor-fluorophore system. The water-soluable TGA-capped CdTe QDs were prepared through a hydrothermal route, NaHTe was used as the Te precursor for CdTe QDs synthesis. Bovine serum albumin (BSA) conjugated to TGA-capped CdTe via an amide link interacting with carboxyl of the TGA-capped CdTe. When antimony ion enters the BSA, the lone pair electrons of the nitrogen and oxygen atom become involved in the coordination, switching off the QD emission and a dramatic quenching of the fluorescence intensity results, allowing the detection of low concentrations of antimony ions. Using the operating principle, the antimony ion sensor based on QD nanoparticles showed a very good linearity in the range 0.10-22.0 microg L(-1), with the detection limit lower than 2.94 x 10(-8) g L(-1) and the relative standard deviation (RSD) 2.54% (n = 6). In a study of interferences, the antimony-sensitive TGA-QD-BSA sensor showed good selectivity. Therefore, a simple, fast, sensitive, and highly selective assay for antimony has been built. The presented method has been applied successfully to the determination of antimony in real water samples (n = 6) with satisfactory results.
基于巯基乙酸(TGA)修饰的CdTe 量子点纳米粒子,我们报道了一种用于 Sb(3+) 测定的新型荧光纳米传感器。这是首例将量子点纳米粒子应用于受体-荧光团体系的锑离子传感器。水溶性 TGA 修饰的 CdTe 量子点是通过水热法制备的,NaHTe 被用作 CdTe 量子点合成的 Te 前驱体。牛血清白蛋白(BSA)通过酰胺键与 TGA 修饰的 CdTe 结合,与 TGA 修饰的 CdTe 的羧基相互作用。当 Sb(3+) 进入 BSA 时,氮和氧原子的孤对电子参与配位,从而关闭了量子点的发射,导致荧光强度的急剧猝灭,从而可以检测低浓度的 Sb(3+)。基于这一工作原理,基于 QD 纳米粒子的 Sb(3+) 传感器在 0.10-22.0μg L(-1) 的范围内表现出很好的线性,检测限低于 2.94×10(-8) g L(-1),相对标准偏差(RSD)为 2.54%(n = 6)。在干扰研究中,这种 Sb(3+) 敏感的 TGA-QD-BSA 传感器表现出良好的选择性。因此,建立了一种简单、快速、灵敏、高选择性的 Sb(3+) 检测方法。该方法已成功应用于实际水样中 Sb(3+) 的测定(n = 6),结果令人满意。