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Dynamic Processes in Sandwich Polymer Light-Emitting Electrochemical Cells

机译:夹层聚合物发光电化学电池中的动态过程

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摘要

The operational mechanism of polymer light-emitting electrochemical cells (LECs) in sandwich geometry is studied by admittance spectroscopy in combination with numerical modeling. At bias voltages below the bandgap of the semiconducting polymer, this allows the determination of the dielectric constant of the active layer, the conductivity of mobile ions, and the thickness of the electric double layers. At bias voltages above the bandgap, p-n junction formation gives rise to an increase in capacitance at intermediate frequencies (≈10 kHz). The time and voltage dependence of this junction are successfully studied and modeled. It is shown that impedance measurements cannot be used to determine the junction width. Instead, the capacitance at intermediate biases corresponds to a low-conductivity region that can be significantly wider than the recombination zone. Finally, the long settling time of sandwich polymer LECs is shown to be due to a slow process of dissociation of salt molecules that continues after the light-emitting p-n junction has formed. This implies that in order to significantly decrease the response-time of LECs an electrolyte/salt combination with a minimal ion binding energy must be used.
机译:通过导纳光谱结合数值模拟研究了夹层几何形状的聚合物发光电化学电池(LEC)的运行机理。在低于半导体聚合物的带隙的偏置电压下,这可以确定活性层的介电常数,可移动离子的电导率和双电层的厚度。在高于带隙的偏置电压下,p-n结的形成会引起中频(≈10kHz)时电容的增加。该结的时间和电压依赖性已成功研究并建模。结果表明,阻抗测量不能用于确定结宽。取而代之的是,在中间偏置处的电容对应于一个低电导率区域,该区域的宽度可能明显大于重组区域。最后,显示出夹层聚合物LEC的长建立时间是由于盐分子解离的缓慢过程所致,该过程在发光p-n结形成后仍持续。这意味着,为了显着降低LEC的响应时间,必须使用具有最小离子结合能的电解质/盐组合。

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  • 来源
    《Advanced Functional Materials》 |2012年第21期|4547-4556|共10页
  • 作者单位

    Department of Applied Physics Eindhoven University of Technology PO Box 513, 5600 MB, Eindhoven, The Netherlands;

    Department of Applied Physics Eindhoven University of Technology PO Box 513, 5600 MB, Eindhoven, The Netherlands;

    Department of Applied Physics Eindhoven University of Technology PO Box 513, 5600 MB, Eindhoven, The Netherlands;

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