| Literature DB >> 25246870 |
Jingli Yue1, Zhenhua Chen2, Yifeng E2, Lianshan Chen1, Jing Zhang2, Yimeng Song3, Yuchun Zhai4.
Abstract
In this paper, we report the facile preparation of monodisperse titanium dioxide-diltiazem/tetrachlorobismuth core-shell nanospheres (TiO2@DTMBi), in which, diltiazem (DTM)/tetrachlorobismuth (BiCl4) complexes were employed as electroactive materials. The morphology, size, formation, and structure of the obtained TiO2@DTMBi spheres were investigated by transmission electron microscopy, scanning electron microscopy, dynamic light scattering, Fourier transform infrared spectroscopy, and X-ray diffraction. The optimal condition of obtained monodisperse 40-nm TiO2@DTMBi spheres was researched. The results of using TiO2@DTMBi nanospheres as proposed drug sensor indicate a wide linear range (10(-7) to 10(-1) M) and a very low detection limit of 0.20 μg/mL.Entities:
Keywords: Diltiazem hydrochloride; Nanoparticles; Sensors; Titanium dioxide
Year: 2014 PMID: 25246870 PMCID: PMC4158343 DOI: 10.1186/1556-276X-9-465
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Key parameters of obtained TiO @DTMBi NSs and drug detection results
| T0 | No TiO2 | Aggregates | 1.53 |
| T1 | 1:1 | Core-shell spheres | 0.20 |
| T2 | 2:1 | Aggregates | 1.12 |
| T3 | 1:2 | Aggregates | 0.94 |
Figure 1Chemical structure of diltiazem hydrochloride.
Figure 2Schematic illustrations, TEM, cyclic voltammograms, and SEM images. (a) Schematic illustration of preparation of TiO2 nanoparticles and TiO2@DTMBi core-shell nanospheres. (b) TEM image of TiO2 nanoparticles; the insert is size distribution. (c) TEM images of TiO2@DTMBi core-shell nanospheres; the inserts are two magnified spheres. (d) Cyclic voltammograms of electrodes (1), T0 and (2) T1. SEM images of the electrode surface (e), T0 and (f) T1.
Figure 3The calibration curve of using (1) DTMBi and (2) TiO @DTMBi core-shell nanospheres as detection sensors.
Figure 4Infrared spectra and XRD reflection. (a) Infrared spectra of samples (1) T1, (2) T3, and (3) T0; (b) XRD reflection of (1) T1, (2) T3, (3) TiO2 NPs, and (4) T0.
Figure 5SEM images of the products obtained under various DTMBi/TiO ratio: (a), 1:1; (b), 2:1; and (c), 1:2.