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Magneto-Electroluminescence in ITO/MEH-PPV:PEO:LiCF3SO3/Al Polymer Light-Emitting Electrochemical Cells

机译:ITO / MEH-PPV:PEO:LiCF3SO3 / Al聚合物发光电化学电池中的磁电致发光

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摘要

Magnetic field effects (MFE) have been extensively studied in organic light emitting diodes because of their potential application in organic spintronics devices. However, only a few studies on MFE in organic light-emitting electrochemical cells (LEC) have been reported. In this paper, magnetic field effects on the electroluminescence of an LEC device with the structure of ITO/MEH-PPV:PEO:LiCF3SO3/Al were studied at various temperatures. The luminance–current–voltage curves of the device shows the typical bi-polar characteristics of LECs; positive magnetic electroluminescence (MEL) was observed with a value of about 2.5% (B = 42 mT, 250 K), showing a Lorentzian line shape. With a decrease in temperature, the MEL value and the threshold voltage increased accordingly, below the possible mechanism is discussed.
机译:磁场效应(MFE)由于在有机自旋电子器件中的潜在应用而在有机发光二极管中得到了广泛的研究。但是,关于有机发光电化学电池(LEC)中的MFE的报道很少。本文研究了在不同温度下磁场对ITO / MEH-PPV:PEO:LiCF3SO3 / Al结构的LEC器件的电致发光的影响。器件的亮度-电流-电压曲线显示了LEC的典型双极性特性。观察到正磁电致发光(MEL)的值约为2.5%(B = 42 mT,250 K),显示出洛伦兹线形状。随着温度降低,MEL值和阈值电压相应增加,下面讨论了可能的机制。

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