Pandey Anshu, Guyot-Sionnest Philippe
The James Franck Institute, The University of Chicago, Illinois 60637, USA.
J Chem Phys. 2007 Sep 14;127(10):104710. doi: 10.1063/1.2766957.
The interband and intraband spectra of colloidal II-VI CdS and CdSe quantum dot cores and CdSZnSe, CdSCdSe, CdSeCdS, and CdSeZnSe core/shell systems are reported. Infrared absorption peaks between 0.5 and 0.2 eV are observed. The slope of the intraband energy versus the first interband absorption feature is characteristic of the relative band alignments of the materials constituting the core and the shell and it is analyzed within an effective mass model. The analysis provides a new estimate of the band gap of zinc blende CdSe as well as the band offsets in zinc blende and wurtzite CdSe, CdS, and ZnSe.
报道了胶体II-VI族硫化镉和硒化镉量子点核以及硫化镉锌硒、硫化镉硒化镉、硒化镉硫化镉和硒化镉锌硒核壳体系的带间和带内光谱。观察到0.5至0.2电子伏特之间的红外吸收峰。带内能量相对于第一个带间吸收特征的斜率是构成核和壳的材料相对能带排列的特征,并在有效质量模型内进行了分析。该分析提供了闪锌矿结构硒化镉带隙以及闪锌矿和纤锌矿结构的硒化镉、硫化镉和硫化锌的带隙偏移的新估计值。