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Methods for Balanced Charge Carriers and Enhanced Efficiency of Organic Phosphorescent Devices

机译:平衡电荷载体和提高有机磷光器件效率的方法

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In this paper, the light emitting efficiency, spectrum, and the lifetime of the phosphorescent devices, whose emission characteristics are strongly dominated not only by the energy transfer but also by the charge carrier trapping induced by the emissive dopant, are explained by differences in the energy levels of the host, dopant, and nearby transport layers. On the basis of our finding on device performance and photocurrent measurement data by time-of-flight (TOF), we suggest a detailed emission mechanism, along with a physical interpretation and practical design scheme for improving the efficiency and lifetime of devices. Moreover, the effects of the modification of charge (both hole and electrons) transporting layers which results in a drop of operating voltage and improved efficiency on the performance of electrophosphorescent device are investigated experimentally. Using the Ir-based phosphorescent emitter, vacuum-evaporated, solution-processed, and composition of their hybrid structures are designed for better charge carrier balance and efficient exciton blocking behavior.
机译:在本文中,磷光器件的发光效率,光谱和寿命,其发光特性不仅受能量转移的强烈支配,而且受发光掺杂剂引起的电荷载流子俘获的支配,这是由于其差异所致。主体,掺杂剂和附近传输层的能级。根据我们对飞行时间(TOF)的器件性能和光电流测量数据的发现,我们提出了详细的发射机制,以及用于提高器件效率和寿命的物理解释和实用设计方案。此外,实验研究了电荷(空穴和电子)传输层的改性导致工作电压下降和效率提高对电致磷光器件性能的影响。使用基于Ir的磷光发射体,对真空蒸发,固溶处理及其混合结构的组成进行了设计,以实现更好的电荷载流子平衡和有效的激子阻挡行为。

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