State Key Laboratory Breeding Base of Photocatalysis, College of Chemistry and Chemical Engineering, Fuzhou University, Fuzhou 350002, People's Republic of China.
ACS Appl Mater Interfaces. 2012 Nov;4(11):6378-85. doi: 10.1021/am302074p. Epub 2012 Nov 13.
One-dimensional (1D) CdS@TiO₂ core-shell nanocomposites (CSNs) have been successfully synthesized via a two-step solvothermal method. The structure and properties of 1D CdS@TiO₂ core-shell nanocomposites (CdS@TiO₂ CSNs) have been characterized by a series of techniques, including X-ray diffraction (XRD), ultraviolet-visible-light (UV-vis) diffuse reflectance spectra (DRS), field-emission scanning electron microscopy (FESEM), photoluminescence spectra (PL), and electron spin resonance (ESR) spectroscopy. The results demonstrate that 1D core-shell structure is formed by coating TiO₂ onto the substrate of CdS nanowires (NWs). The visible-light-driven photocatalytic activities of the as-prepared 1D CdS@TiO₂ CSNs are evaluated by selective oxidation of alcohols to aldehydes under mild conditions. Compared to bare CdS NWs, an obvious enhancement of both conversion and yield is achieved over 1D CdS@TiO₂ CSNs, which is ascribed to the prolonged lifetime of photogenerated charge carriers over 1D CdS@TiO₂ CSNs under visible-light irradiation. Furthermore, it is disclosed that the photogenerated holes from CdS core can be stuck by the TiO₂ shell, as evidenced by controlled radical scavenger experiments and efficiently selective reduction of heavy-metal ions, Cr(VI), over 1D CdS@TiO₂ CSNs, which consequently leads to the fact that the reaction mechanism of photocatalytic oxidation of alcohols over 1D CdS@TiO₂ CSNs is apparently different from that over 1D CdS NWs under visible-light irradiation. It is hoped that our work could not only offer useful information on the fabrication of various specific 1D core-shell nanostructures, but also open a new doorway of such 1D core-shell semiconductors as visible-light photocatalysts in the promising field of selective transformations.
一维 (1D) CdS@TiO₂ 核壳纳米复合材料 (CSNs) 已通过两步溶剂热法成功合成。通过一系列技术,包括 X 射线衍射 (XRD)、紫外-可见漫反射光谱 (UV-vis DRS)、场发射扫描电子显微镜 (FESEM)、光致发光光谱 (PL) 和电子自旋共振 (ESR) 光谱,对 1D CdS@TiO₂ 核壳纳米复合材料 (CdS@TiO₂ CSNs) 的结构和性质进行了表征。结果表明,1D 核壳结构是通过将 TiO₂ 涂覆在 CdS 纳米线 (NWs) 的基底上形成的。通过在温和条件下选择性氧化醇类来评估所制备的一维 CdS@TiO₂ CSNs 的可见光驱动光催化活性。与裸 CdS NWs 相比,在一维 CdS@TiO₂ CSNs 上实现了转化率和产率的明显提高,这归因于在可见光照射下,一维 CdS@TiO₂ CSNs 中光生载流子的寿命延长。此外,通过受控自由基清除剂实验和有效地选择性还原重金属离子 Cr(VI),揭示了 CdS 核产生的光生空穴可以被 TiO₂ 壳捕获,这导致了在可见光照射下,光催化氧化醇类的反应机制在一维 CdS@TiO₂ CSNs 上明显不同于一维 CdS NWs。希望我们的工作不仅能为各种特定的一维核壳纳米结构的制备提供有用的信息,而且能为这种一维核壳半导体作为可见光光催化剂在有前途的选择性转化领域开辟新的途径。