Department of Chemistry and Chemical Engineering, Virginia Commonwealth University, Richmond, VA 23284, USA.
Small. 2011 Dec 2;7(23):3299-307. doi: 10.1002/smll.201100688. Epub 2011 Oct 13.
A general approach, based on heterogeneous nucleation and growth of CdSe nanostructures on Au or Ag nanocrystals, for the synthesis of Au-CdSe and Ag-CdSe hybrid nanostructures is developed. The new approach provides a versatile one-pot route for the synthesis of hybrid nanoflowers consisting of a gold or silver core and multipod CdSe rods or an intact CdSe shell with controlled thickness, depending on the nucleation and growth parameters. At lower growth temperatures such as 150 °C, the CdSe clusters are adsorbed on the surface of the metal cores in their surface defects, then multiple arms and branches form, resulting in nanoflower-shaped hybrid structures. Increasing the size of the metal core through the choice of the reducing and capping agents results in an improvement of the interface between the metal and CdSe domains, producing core-shell structures. The growth temperature appears to be the most important factor determining the nature of the interface between the metal and CdSe domains. At relatively high temperatures such as 300 °C, the formation of large, faceted Au cores creates preferential growth sites for the CdSe nanocrystalline shell, thus resulting in well-defined Au-CdSe core-shell structures with large interfaces between the Au and CdSe domains. The present approach is expected to foster systematic studies of the electronic structures and optical properties of the metal-semiconductor hybrid materials for potential applications in photovoltaic and nanoelectronic devices.
一种基于金或银纳米晶上的 CdSe 纳米结构异质成核和生长的通用方法,用于合成 Au-CdSe 和 Ag-CdSe 杂化纳米结构。这种新方法提供了一种通用的一锅法途径,用于合成由金或银核和多足 CdSe 棒或完整的 CdSe 壳组成的杂化纳米花,其厚度取决于成核和生长参数。在较低的生长温度(如 150°C)下,CdSe 团簇在其表面缺陷处吸附在金属核的表面,然后形成多个臂和分支,从而形成纳米花状杂化结构。通过选择还原和封端剂来增大金属核的尺寸,会改善金属和 CdSe 域之间的界面,从而产生核壳结构。生长温度似乎是决定金属和 CdSe 域之间界面性质的最重要因素。在相对较高的温度(如 300°C)下,大的、有面的 Au 核形成有利于 CdSe 纳米晶壳的优先生长点,从而导致具有大界面的明确的 Au-CdSe 核壳结构 between the Au and CdSe domains. 该方法有望促进对金属-半导体杂化材料的电子结构和光学性质的系统研究,以用于光伏和纳米电子器件等潜在应用。