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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >A CORRESPONDING RELATION BETWEEN ELECTROLUMINESCENT INTENSITY AND THE ENERGY AND CHARGE TRANSFER IN DOPED ORGANIC ELECTROLUMINESCENT DEVICES
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A CORRESPONDING RELATION BETWEEN ELECTROLUMINESCENT INTENSITY AND THE ENERGY AND CHARGE TRANSFER IN DOPED ORGANIC ELECTROLUMINESCENT DEVICES

机译:掺杂有机电致发光器件中电致发光强度与能量和电荷转移的对应关系

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摘要

In doped organic electroluminescent devices (OLEDs), the changes of the fluorescence spectra occurred due to the energy and charge transfer from guest to host. A quantitative relation between the energy and charge transfer for doping OLEDs was studied by means of a Hamiltonian model. It was found that there is a corresponding relation between the EL intensity of doped PVK and the amount of the transferred charge and the change of the energy derived from charge transfer with dopant concentration, and the more the amount of the transferred charge and the decreasing of the energy from charge transfer, the higher the EL intensity in doped OLEDs. We can deduce that the efficient energy transfer results from the transferred charge between PVK and perylene. Based on the transport mechanism of carriers in conjugated polymer, an expression of conductivity was presented. Calculated results indicated that there is also a corresponding relation between the EL intensity of doped PVK and conductivities with dopant concentration. The larger the conductivities, the higher the EL intensity in doped OLEDs.
机译:在掺杂的有机电致发光器件(OLED)中,荧光光谱的变化是由于能量和电荷从客体转移到主体而发生的。借助哈密顿模型研究了掺杂OLED的能量和电荷转移之间的定量关系。发现掺杂的PVK的EL强度与转移的电荷量之间以及由电荷转移引起的能量随掺杂剂浓度的变化之间存在对应的关系,转移的电荷量越多,且电荷的减少越多。来自电荷转移的能量,掺杂的OLED中的EL强度越高。我们可以推断出有效的能量转移是由PVK和per之间的电荷转移引起的。基于载体在共轭聚合物中的传输机理,给出了电导率的表达。计算结果表明,掺杂的PVK的EL强度与电导率随掺杂浓度之间也存在对应关系。电导率越大,掺杂OLED中的EL强度越高。

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