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Charge Transport in Mixed Organic Disorder Semiconductors: Trapping, Scattering, and Effective Energetic Disorder

机译:混合有机无序半导体中的电荷传输:陷阱,散射和有效的高能紊乱

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摘要

The effects of trapping and scattering on the transporting properties of organic disorder semiconductors have been studied by time-of-flight (TOF) method. Tris-(8-hydroxyquinoline)-aluminum (Alq3), 2,2',2"-(l,3,5-benzene-triyl)-tris-(l-phenyl-1H-benzimid-azole) (TPBi), and N,N-diphenyl-N,N-bis (1-naphthyl)-(1,1'-biphenyl)-4,4 'diamine (NPB) are doped into 4,4'-N,N'-dicarbazolebiphenyl (CBP) to form traps and scatters with various energy level differences. It is found that the low scatters significantly reduce the mobility and make the TOF transients, while the deep traps and high scatters would not significantly reduce the mobility and change the nondispersive behavior of the TOF transients. The main difference between deep traps and high scatters is that the deep traps induce a great reduction of the photocurrent, while the high scatters do not obviously decrease the photocurrent. The experimental results are well explained by the Miller-Abrahams hopping model and the effective energetic disorder. Furthermore, a theoretical method is established to determine the demarcation between the shallow trap (low scatter) and the deep trap (high scatter) in terms of energy level differences. These results may shed light on the understanding of charge transport in mixed organic semiconductors.
机译:通过飞行时间(TOF)方法研究了俘获和散射对有机无序半导体传输特性的影响。三(8-羟基喹啉)-铝(Alq3),2,2',2“-(1,3,5-苯三基)-三-(1-苯基-1H-苯并咪唑)(TPBi),将N,N-二苯基-N,N-双(1-萘基)-(1,1'-联苯)-4,4'-二胺(NPB)掺杂到4,4'-N,N'-二咔唑联苯( CBP)形成具有不同能级差的陷阱和散射,发现低散射会显着降低迁移率并使TOF瞬变,而深陷阱和高散射不会显着降低迁移率并改变其非分散性TOF瞬态:深陷阱和高散射之间的主要区别在于,深陷阱诱使光电流大大降低,而高散射并没有明显降低光电流,Miller-Abrahams跳跃模型和有效的能量紊乱。此外,建立了一种理论方法来确定浅层陷阱(低散射)和深层陷阱(高散射)之间的界限散度)。这些结果可能有助于理解混合有机半导体中的电荷传输。

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