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Charge injection and transport in spiro-linked arylamine compounds

机译:螺旋芳胺化合物中的电荷注射和运输

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We use dark-injection space-charge-limited current (DI-SCLC) and admittance spectroscopy (AS) to study charge injection and transport properties of Spiro-linked arylamine compounds. Examples are spiro-linked TPD and spiro-linked NPB which are both important amorphous hole transporters for organic light-emitting diodes (OLEDs). With PEDOT:PSS as the hole-injection layer, the contact is demonstrated to be generally Ohmic. Both techniques can be used to measure the carrier mobilities of thick films (>μm) of spiro-compounds. DI-SCLC can be viewed as a pulse technique whereas AS can be treated as an ac technique. For the hole mobilities evaluation of the spiro-compounds, both techniques are in general agreement to each other. However, for the case of the thinner films of less than 1μm, AS is superior over the DI-SCLC technique. The advantages of AS will be highlighted. It appears that AS is broadly applicable to characterize transport properties of organic thin films.
机译:我们使用深注射空间充电限制电流(DI-SCLC)和纳米谱(AS)研究螺纹芳基胺化合物的电荷注射和运输性能。实例是螺旋连接的TPD和螺纹连接的NPB,其是用于有机发光二极管(OLED)的重要无定形空穴运输器。使用PEDOT:PSS作为空穴注入层,触点被证明是欧姆的。两种技术可用于测量螺旋化合物的厚膜(>μm)的载体迁移率。 DI-SCLC可以被视为脉冲技术,而可以作为AC技术视为脉冲技术。对于螺旋化合物的孔迁移率,这两种技术都是彼此一致的。然而,对于较薄的薄膜小于1μm的情况,在DI-SCLC技术上优异。将突出显示的优点。似乎广泛适用于表征有机薄膜的运输性能。

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