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ITO Breakers: Highly Transparent Conducting Polymer/Metal/Dielectric (P/M/D) Films for Organic Solar Cells

机译:ITO断路器:用于有机太阳能电池的高透明导电聚合物/金属/电介质(P / M / D)膜

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摘要

Ormoclear/Ag/WO3 (OAW) films with ultrahigh transparency are designed for application in organic solar cells (OSCs). When the thicknesses of Ag and WO3 are fixed at 8 nm and 30 nm, respectively, excellent transparency that is independent of Ormoclear thickness is successfully achieved by employing soft materials instead of inorganic dielectrics. Oxygen plasma treatment prior to the deposition of Ag introduces the polar functional groups on the Ormoclear surface, which results in increasing the surface hydrophilicity, thereby enhancing the wettability of Ag. From the surface modification, OAW exhibits low sheet resistance (4.8 ohm sq-1), high transmittance of up to 96.3% at 535 nm, and enhanced efficiency of 7.63% of OSCs. Moreover, nanoimprint lithography is used to prepare a well-ordered nanopatterned OAW with dimple diameter of 90 nm, leading to further increase in photocurrent density by 17%, compared to that with a planar indium tin oxide (ITO) electrode.
机译:具有超高透明性的Ormoclear / Ag / WO3(OAW)膜设计用于有机太阳能电池(OSC)。当Ag和WO 3的厚度分别固定在8nm和30nm时,通过使用软材料代替无机电介质成功地实现了与Ormoclear厚度无关的优异的透明性。在沉积Ag之前进行氧等离子体处理会在Ormoclear表面上引入极性官能团,从而导致表面亲水性增加,从而增强Ag的润湿性。从表面改性来看,OAW表现出低的薄层电阻(4.8 ohm sq-1),在535 nm处的透射率高达96.3%,OSC的效率提高了7.63%。此外,纳米压印光刻技术用于制备井眼直径为90 nm的井井有条的纳米图案OAW,与平面氧化铟锡(ITO)电极相比,光电流密度进一步提高了17%。

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