首页> 外文期刊>Frontiers in Materials >Development of Highly Bendable Transparent Window Electrodes Based on MoOx, SnO2, and Au Dielectric/Metal/Dielectric Stacks: Application to Indium Tin Oxide (ITO)-Free Perovskite Solar Cells
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Development of Highly Bendable Transparent Window Electrodes Based on MoOx, SnO2, and Au Dielectric/Metal/Dielectric Stacks: Application to Indium Tin Oxide (ITO)-Free Perovskite Solar Cells

机译:基于MOOX,SnO2和Au电介质/金属/介电叠层的高度可弯曲透明窗电极的研制:在氧化铟锡(ITO) - 完全钙钛矿太阳能电池的应用

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Indium-doped tin oxide (ITO) is the transparent conductive material of choice for a wide range of optoelectronic devices such as sensors, light-emitting diodes and solar cells. However, its brittle nature, high cost, scarcity as well as aggressive deposition via sputtering determine the need to find cheap alternatives with high optical transparency, low sheet resistance, and mechanical flexibility. Dielectric/metal/dielectric (D/M/D) electrodes fulfill all these requirements and are deposited via low embodied energy low-temperature processing. We developed D/M/D multilayered electrodes based on thermally evaporated MoOx or solution-processed SnO2 seed layers, a thermally evaporated ultrathin Au film, and a spin-coated SnO2 top layer on rigid glass substrates. We first systematically unraveled the role of each layer on the resistance-transmittance properties of the full D/M/D electrode structure. By optimizing the thickness of the seed, metal and the top layer, we obtained electrodes with transmittance of 72% at 550 nm and a minimum sheet resistance of ~9 W sq-1. Subsequently, these optimized multilayered stacks were employed as bottom electrodes for perovskite solar cells with glass/D/M/D/mesoporous-TiO2/CH3NH3PbI3/spiro-MeOTAD/Au device architecture, delivering power conversion efficiencies (PCE) of 10.7%. Further, we deposited and characterized D/M/D electrodes on flexible polyethylene terephthalate (PET) films, achieving a maximum PCE of 7.6%. The difference in performance compared to rigid glass devices can be ascribed to the different wetting of the active layer on PET substrates. Flexible D/M/D electrodes displayed excellent mechanical properties compared to commercial PET/ITO, showing completely stable sheet resistance after repeated bending even down to 1.5 mm of curvature radius, whereas PET/ITO showed one order of magnitude increase in sheet resistance in the same mechanical test, due to formation of cracks in the conductive oxide. Our optimized D/M/D stacks on glass and especially on PET or other flexible substrates are therefore excellent alternatives to ITO as transparent window electrodes for low-cost, light-weight and conformal optoelectronics applications.
机译:掺杂型氧化锡(ITO)是透明导电材料,用于各种光电器件,例如传感器,发光二极管和太阳能电池。然而,其脆性性质,高成本,稀缺以及通过溅射的侵蚀性沉积决定了能够找到具有高光学透明度,低薄层电阻和机械柔韧性的便宜替代品。电介质/金属/介电(D / M / D)电极满足所有这些要求,并通过低体积的能量低温加工沉积。我们开发了基于热蒸发的MOOX或溶液加工的SnO2种子层的D / M / D多层电极,在刚性玻璃基板上热蒸发的超薄Au膜和旋涂的SnO2顶层。我们首先系统地解开了每个层对全D / M / D电极结构的电阻透射性特性的作用。通过优化种子,金属和顶层的厚度,我们获得的电极在550nm处的透射率为72%和〜9W SQ-1的最小薄层电阻。随后,这些优化的多层叠层用作玻璃/ D / M / D / MESOPOOMOOM-TIO2 / CH3NH3PBI3 / SPIRO-MEOTAD / AU器件架构的钙钛矿太阳能电池的底部电极,提供电力转换效率(PCE)为10.7%。此外,我们在柔性聚对苯二甲酸乙二醇酯(PET)膜上沉积和表征D / M / D电极,实现了7.6%的最大PCE。与刚性玻璃装置相比的性能差异可以归因于PET基板上的有源层的不同润湿。与商业PET / ITO相比,柔性D / M / D电极显示出优异的机械性能,在重复弯曲至1.5mm的曲率半径后,显示出完全稳定的薄层电阻,而PET / ITO在薄层电阻上显示了一种数量级增加相同的机械测试,由于在导电氧化物中形成裂缝。因此,我们的优化D / M / D叠层,尤其是PET或其他柔性基板上是丝网的优异替代品,作为用于低成本,轻质和保形光电子应用的透明窗电极。

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