In this study, the conversion efficiency(CE) of a core/shell quantum dot(QD) with type-II structure is studied by the detailed balance model. In particular, a size dependent strain effect caused by the lattice mismatc...In this study, the conversion efficiency(CE) of a core/shell quantum dot(QD) with type-II structure is studied by the detailed balance model. In particular, a size dependent strain effect caused by the lattice mismatch is considered since the CE under the detailed balance model is strongly dependent on the band gap of materials. The results show that the strain effect has a very important influence on the CE, and the multiple exction generation(MEG) can significantly increase the CE, so it must be considered in such a low-dimensional system.展开更多
为了探究有机发光二极管(OLEDs)中三重态激子参与的多种机制共同作用下磁场效应的变化规律,揭示复杂环境下OLEDs的性能变化规律,本文在具有较高三重态激子能量的磷光材料m CP中掺入单重态与三重态激子能量共振(ES≈2ET)的荧光染料Rubre...为了探究有机发光二极管(OLEDs)中三重态激子参与的多种机制共同作用下磁场效应的变化规律,揭示复杂环境下OLEDs的性能变化规律,本文在具有较高三重态激子能量的磷光材料m CP中掺入单重态与三重态激子能量共振(ES≈2ET)的荧光染料Rubrene,制备了Rubrene掺杂型的OLEDs.实验发现,掺杂器件的电致发光磁场效应(MEL)表现出了复杂变化,且MEL的低场(B≤5 m T)和高场(5 m T≤B≤500 m T)部分随着掺杂浓度的改变都发生了明显的变化.这些MEL曲线可归结为掺杂体系内超精细相互作用、单重态激子裂变和三重态-三重态激子淬灭三种微观过程共同作用的结果;而不直接产生荧光的三重态激子,可以通过一些自旋混合过程,改变单重态激子的比例,从而对器件发光产生重要影响.器件的工作温度和注入电流密度对磁场效应的影响进一步证实了本研究组的观点.展开更多
基金supported by the Doctoral Staring up Foundation of Inner Mongolia Agricultural University(No.BJ2013B-2)
文摘In this study, the conversion efficiency(CE) of a core/shell quantum dot(QD) with type-II structure is studied by the detailed balance model. In particular, a size dependent strain effect caused by the lattice mismatch is considered since the CE under the detailed balance model is strongly dependent on the band gap of materials. The results show that the strain effect has a very important influence on the CE, and the multiple exction generation(MEG) can significantly increase the CE, so it must be considered in such a low-dimensional system.
文摘为了探究有机发光二极管(OLEDs)中三重态激子参与的多种机制共同作用下磁场效应的变化规律,揭示复杂环境下OLEDs的性能变化规律,本文在具有较高三重态激子能量的磷光材料m CP中掺入单重态与三重态激子能量共振(ES≈2ET)的荧光染料Rubrene,制备了Rubrene掺杂型的OLEDs.实验发现,掺杂器件的电致发光磁场效应(MEL)表现出了复杂变化,且MEL的低场(B≤5 m T)和高场(5 m T≤B≤500 m T)部分随着掺杂浓度的改变都发生了明显的变化.这些MEL曲线可归结为掺杂体系内超精细相互作用、单重态激子裂变和三重态-三重态激子淬灭三种微观过程共同作用的结果;而不直接产生荧光的三重态激子,可以通过一些自旋混合过程,改变单重态激子的比例,从而对器件发光产生重要影响.器件的工作温度和注入电流密度对磁场效应的影响进一步证实了本研究组的观点.