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Rough Electrode Surface: Effect on Charge Carrier Injection and Transport in Organic Devices

机译:粗糙电极表面:对有机装置中的电荷载体注射和运输的影响

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The effect of electrode roughness on charge carrier injection and transport is considered. An explicit formula connecting the roughness profile of an electrode with the distribution of the electric field at its surface (and the electrostatic potential in the bulk of transport layer) is derived for the case of smooth roughness, when the typical height of roughness element is small in comparison with its size across the surface (this is a very typical situation). This formula gives us an opportunity to measure the electrode surface profile (e.g., by AFM) and then to calculate various injection properties of this particular electrode for any kind of injection. General properties of the electrode - organic layer interface in the case of significant (not smooth) roughness are considered and a suitable numeric procedure for the calculation of the surface electric field distribution is proposed. It is also shown that rough surface of electrodes generates an additional energy disorder in the bulk of transport layer. This principal result indicates that the electrode roughness affects not only carrier injection but carrier transport as well. Roughness-induced energetic disorder produces a channel-like structure in the vicinity of the electrode, thus providing separation of electrons and holes. Such separation should decrease the charge recombination rate and, hence, the emitting efficiency of light emitting devices. At the same time, the separation is favorable to solar cells.
机译:考虑了电极粗糙度对电荷载体喷射和运输的影响。当粗糙度元素的典型高度小时,导出将电极的粗糙度与电场的分布连接到其表面(和大量传输层中的静电电位)的显式公式。与其横跨表面的大小相比(这是一个非常典型的情况)。该公式使我们有机会测量电极表面轮廓(例如,通过AFM),然后计算该特定电极的各种注射特性以用于任何类型的注射。考虑了电极 - 有机层界面的电极 - 有机层界面的一般特性,提出了用于计算表面电场分布的合适的数值过程。还表明,电极的粗糙表面在大量的传输层中产生额外的能量障碍。该主要结果表明电极粗糙度不仅影响载体喷射而且也影响载波运输。粗糙诱导的能量紊乱在电极附近产生相同的沟道结构,从而提供电子和孔的分离。这种分离应降低电荷重组率,从而降低发光器件的发光效率。同时,分离是有利的太阳能电池。

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