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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Enhancing device efficiencies of solid-state white light-emitting electrochemical cells by employing waveguide coupling
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Enhancing device efficiencies of solid-state white light-emitting electrochemical cells by employing waveguide coupling

机译:通过波导耦合提高固态白光电化学电池的器件效率

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摘要

Solid-state white light-emitting electrochemical cells (LECs) have received intense scientific attention owing to their potential applications in display and lighting. Although device efficiencies of white LECs have been significantly improved in recent years, further improvements are still required for their practical applications. In this work, we demonstrate the enhancement of device efficiencies of white LECs by employing waveguide coupling. Two transparent photoresist (TPR) layers doped with TiO2 nanoparticles (NPs) are inserted between the indium tin oxide (ITO) layer and the glass substrate. By tuning the doping concentration of 25 nm TiO2 NPs in the upper TPR layer to adjust the refractive index, effective waveguide coupling between the ITO layer and the lower TPR layer can be achieved. Since the lower TPR layer contains 250 nm TiO2 NPs, electroluminescence (EL) outcoupled from the ITO layer can be scattered and redirected into the forward direction. Furthermore, the EL trapped in the glass substrate can also transmit into the lower TPR layer and then is scattered to the forward direction. When the EL trapped in the ITO layer and the glass substrate can be effectively recycled into the forward direction, the peak external quantum efficiency and power efficiency obtained in white LECs employing waveguide coupling are up to 19.4% and 34.1 lm W-1, respectively. These efficiencies are among the highest reported for white LECs and thus confirm that waveguide coupling would be useful for realizing highly efficient white LECs. In addition to the enhanced device efficiencies, improved color migration of EL spectra, which is desired for lighting applications, can be obtained in white LECs with scattering waveguide layers since EL of different angles can be mixed in the forward direction.
机译:固态发射白光的电化学电池(LEC)由于其在显示和照明中的潜在应用而受到了广泛的科学关注。尽管近年来白色LEC的器件效率已得到显着提高,但实际应用仍需要进一步的改进。在这项工作中,我们证明了通过采用波导耦合可以增强白色LEC的器件效率。将掺杂有TiO2纳米颗粒(NPs)的两个透明光致抗蚀剂(TPR)层插入到氧化铟锡(ITO)层和玻璃基板之间。通过调节上TPR层中的25nm TiO 2 NPs的掺杂浓度以调节折射率,可以实现ITO层和下TPR层之间的有效波导耦合。由于下部TPR层包含250 nm的TiO2 NP,因此可以将与ITO层耦合的电致发光(EL)散射并重定向到正向。此外,捕获在玻璃基板中的EL也可以透射到下部TPR层中,然后向正方向散射。当捕获在ITO层和玻璃基板中的EL可以有效地向前循环时,在采用波导耦合的白色LEC中获得的峰值外部量子效率和功率效率分别高达19.4%和34.1 lm W-1。这些效率是白色LEC报告的最高效率之一,因此证实了波导耦合对于实现高效白色LEC很有用。除了增强的器件效率外,由于具有不同角度的EL可以在正向方向上混合,因此在具有散射波导层的白色LEC中,可以实现照明应用所需的EL光谱改善的色迁移。

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