标题: | 具Au修饰的ZnSe•0.5(N2H4)奈米晶体之成长控制与其可见光催化特性研究 Controlled Growth of Au-decorated ZnSe•0.5(N2H4) Nanocrystals and Their Visible-light-driven Photocatalytic Properties |
作者: | 刘陶承 Liu, Tao-Cheng 徐雍蓥 Hsu, Yung-Jung 材料科学与工程学系 |
关键字: | 硒化锌;一维奈米材料;水热法;异质结构;光催化;成长控制;ZnSe;1-D nanomaterials;hydrothermal;heterostructure;photocatalysis;controlled growth |
公开日期: | 2010 |
摘要: | 本论文发展出一水热反应程序,成功地制备出各种ZnSe•0.5(N2H4)奈米晶体,包含奈米线、奈米带与奈米板结构。于实验结果发现,联胺与水的比例在此水热反应系统中扮演着非常重要的角色,藉由调控此比例可直接控制产物的组成与形貌。产物ZnSe•0.5(N2H4)的化学组成与晶体结构,乃利用XRD、TGA、FTIR、XPS及TEM等分析来检验与确认。在各种结构样品的比较中,ZnSe•0.5(N2H4)奈米线拥有相对较长的光激发载子生命周期,使其能够表现出最佳的光催化分解rhodamine B染料分子的效率。而相较于相关商用品例如N-doped P-25 TiO2与ZnSe粉末,ZnSe•0.5(N2H4)奈米线于可见光下亦表现出较好的光催化能力,此结果显示其可作为高效能光触媒之潜力。经由表面修饰Au奈米粒子后,ZnSe•5(N2H4)奈米线之光催化活性可被进一步提升,此效能提升乃由于ZnSe•0.5(N2H4)/Au介面所带来显着的载子分离效果所致,载子分离之现象则可以时间解析萤光光谱分析来作定量描述。 ZnSe•0.5(N¬2H4) nanocrystals with various morphologies including nanowires, nanobelts and nanosheets were successfully prepared with a hydrothermal synthetic approach. It was found that the ratio of N2H4 to H2O employed in synthesis played an important role in nanocrystal growth, affecting the resultant composition and morphology of product. The chemical composition and crystallographic structure of ZnSe•0.5(N2H4) were examined and confirmed with XRD, TGA, FTIR, XPS and TEM analyses. With a relatively long exciton lifetime, ZnSe•0.5(N2H4) nanowires peformed much better in the photodegradation of rhodamine B than the other four counterpart products. As compared to the relevant commercial products like N-doped P-25 TiO2 and ZnSe powders, the as-synthesized ZnSe•0.5(N2H4) nanowires exhibited superior photocatalytic performance under visible light illumination, demonstrating their potential as an efficient photocatalyst in relevant redox reactions. A further enhancement in the photocatalytic activity can be achieved for ZnSe•0.5(N2H4) nanocrystals when Au nanoparticles were deposited on their surfaces. This improvement resulted from the pronounced charge carrier separation occurring at the interface of ZnSe•0.5(N2H4)/Au, which can be quantitatively interpreted with the time-resolved photoluminescence analysis. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT079818559 http://hdl.handle.net/11536/47384 |
显示于类别: | Thesis |