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Localized and guided electroluminescence from roll printed organic nanofibres

机译:辊式印刷有机纳米纤维的局部和引导电致发光

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摘要

Here, we report localized, polarized and waveguided electroluminescence (EL) from well aligned organic nanofibres integrated via roll printing on transistor platforms. The localized emission is due to the application of an alternating current voltage to the transistor gate electrodes, which causes sequential injection of holes and electrons into the organic material with subsequent charge carrier recombination and light emission from a small area near the metal-nanofibre interface. The polarization results from the mutually parallel ordering of the molecular constituents, in which the emitting dipole is oriented along the long molecular axis. Furthermore, their morphology enables the nanofibres to operate as optical waveguides and part of the generated light is therefore guided along the nanofibre and radiated at the nanofibre end. In addition to the standard hexaphenylene nanofibres, we also demonstrate that this scheme can facilitate EL from a nanofibre made from a different type of molecule with altered spectral characteristics. The realization of an electrically biased organic nanoscale light-emitter demonstrates the ability to fabricate on-chip light sources with a tunable emission spectrum via synthesis of appropriate molecular building blocks.
机译:在这里,我们从晶体管平台上通过辊式印刷集成的,排列良好的有机纳米纤维报告了局部,偏振和波导电致发光(EL)。局部发射是由于向晶体管栅电极施加了交流电压,这导致空穴和电子顺序注入有机材料,随后进行电荷载流子复合,并从金属纳米纤维界面附近的一小部分发光。极化起因于分子成分的相互平行排列,其中发射偶极子沿长分子轴取向。此外,它们的形态使纳米纤维能够用作光波导,因此所产生的光的一部分沿着纳米纤维被引导并在纳米纤维末端辐射。除了标准的六亚苯基纳米纤维之外,我们还证明了该方案可以促进由具有不同光谱特征的不同类型分子制成的纳米纤维制成的EL。电偏压有机纳米级发光体的实现证明了能够通过合成适当的分子构件来制造具有可调发射光谱的片上光源的能力。

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