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The fabrication of high density nanochannel organic light emitting diodes with reduced charge spreading

机译:减少电荷扩散的高密度纳米通道有机发光二极管的制造

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摘要

This study reports fabrication and characterization of nanoscale organic light emitting diodes with reduced charge spreading. Nanoimprint lithography is used to make SU-8 nanochannels with 90 sidewalls into which N-bis(naphthalen-1-yl)-N,N-bis(phenyl)benzidine (NPB) and tris-(8-hydroxyquinoline) aluminum (Alq3) are thermally evaporated, to avoid charge spreading. Micron grating devices are fabricated for comparison. Device characteristics show that performance is retained while scaling down to nanochannels, as no geometry dependent trend is observed. Surface potential microscopy (SPM) measurements reveal an identical periodic difference in surface potential for nanochannel and microscale grating devices. The SPM results, together with cross-sectional scanning electron microscopy observation of the physical separation of nanoscale organic light emitting diodes (OLEDs), indicate electrical separation and isolated light emission from nanoscale confined OLEDs with minimized charge spreading.
机译:这项研究报告了减少电荷扩散的纳米级有机发光二极管的制造和表征。纳米压印光刻技术用于制造具有90个侧壁的SU-8纳米通道,其中N-双(萘-1-基)-N,N-双(苯基)联苯胺(NPB)和三-(8-羟基喹啉)铝(Alq3)被热蒸发,以避免电荷扩散。制造微米光栅装置用于比较。器件特性表明,当缩小到纳米通道时,性能得以保留,因为没有观察到几何形状相关的趋势。表面电势显微镜(SPM)测量揭示了纳米通道和微米级光栅设备的表面电势具有相同的周期性差异。 SPM结果以及对纳米级有机发光二极管(OLED)物理分离的截面扫描电子显微镜观察表明,电分离和来自纳米级受限OLED的隔离光发射具有最小的电荷扩散。

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