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Ultra-Smooth Fully Solution-Processed Large-Area Transparent Conducting Electrodes for Organic Devices

机译:用于有机设备的超光滑完全溶液处理的大面积透明导电电极

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摘要

A novel approach for the fabrication of ultra-smooth and highly bendable substrates consisting of metal grid-conducting polymers that are fully embedded into transparent substrates (ME-TCEs) was successfully demonstrated. The fully printed ME-TCEs exhibited ultra-smooth surfaces (surface roughness ~1.0 nm), were highly transparent (~90% transmittance at a wavelength of 550 nm), highly conductive (sheet resistance ~4 Ω ◻−1), and relatively stable under ambient air (retaining ~96% initial resistance up to 30 days). The ME-TCE substrates were used to fabricate flexible organic solar cells and organic light-emitting diodes exhibiting devices efficiencies comparable to devices fabricated on ITO/glass substrates. Additionally, the flexibility of the organic devices did not degrade their performance even after being bent to a bending radius of ~1 mm. Our findings suggest that ME-TCEs are a promising alternative to indium tin oxide and show potential for application toward large-area optoelectronic devices via fully printing processes.
机译:成功证明了一种新颖的制造超光滑且高度弯曲的基板的方法,该基板由完全嵌入透明基板(ME-TCE)中的金属网格导电聚合物组成。完全印刷的ME-TCE具有超光滑的表面(表面粗糙度〜1.0 nm),高度透明(在550 nm波长下的透射率约为90%),高导电性(薄层电阻〜4Ω◻ -1 < / sup>),并且在环境空气中相对稳定(在30天之内保持约96%的初始电阻)。 ME-TCE基板用于制造柔性有机太阳能电池,而有机发光二极管的装置效率可与在ITO /玻璃基板上制造的装置相媲美。此外,有机器件的挠性即使弯曲到〜1?mm的弯曲半径也不会降低其性能。我们的发现表明,ME-TCE是铟锡氧化物的有前途的替代品,并显示出通过完全印刷工艺应用于大面积光电器件的潜力。

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