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Understanding the formation of PEDOT:PSS films by ink-jet printing for organic solar cell applications

机译:了解PEDOT的形成:PSS薄膜通过喷墨印刷用于有机太阳能电池应用

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One of the most exciting aspects of organic electronic devices, in particular organic solar cells, is their potential for low cost and large scale manufacturing using printing technologies such as inkjet printing. In this manuscript, we report our work on developing an understanding of the ink-jet printing process to print smooth and transparent PEDOT:PSS (poly(3,4-ethylenedioxythiophene):poly(styrene sulfonate)) films for organic solar cell devices. The parameters that were found to strongly affect the formation of a continuous PEDOT:PSS film were substrate surface treatment, drop spacing, substrate temperature during printing as well as annealing. We investigated the effect of these parameters through detailed morphological characterization using optical and atomic force microscopy and the results suggested that one can achieve a transmittance of ~90% for a ca . 110 nm thick film with a uniform structure and morphology, fabricated using a drop spacing of 30 μm and an annealing temperature of 120 °C. Overall, PEDOT:PSS film characteristics are strongly influenced by the substrate temperature during printing and annealing temperature as well as surface modification, determined by a mix of surface wetting characteristics, rate of evaporation of the solvent and coalescence of the printed lines. The organic solar devices fabricated using these inkjet printed PEDOT:PSS films show comparable performance yielding a power conversion efficiency of ca. 2.64% in comparison to ca. 3.1%, showed by the devices fabricated on standard spin coated PEDOT:PSS films.
机译:有机电子设备的最激动人心的方面之一,特别是有机太阳能电池,是使用诸如喷墨印刷等印刷技术的低成本和大规模制造的潜力。在这份手稿中,我们向开发了解对喷墨印刷过程的理解,以打印光滑透明的转型:PSS(聚(3,4-亚乙基氧基噻吩):用于有机太阳能电池装置的聚(苯乙烯磺酸盐))薄膜。发现强烈影响形成连续型号的参数:PSS膜是衬底表面处理,下降间距,印刷期间的基板温度以及退火。我们通过使用光学和原子力显微镜的详细形态学表征来研究这些参数的效果,结果表明,对于CA可以达到〜90%的透射率。 110nm厚膜具有均匀的结构和形态,使用30μm的下降间距制造和120℃的退火温度。总的来说,PEDOT:PSS膜特性受印刷和退火温度期间的基材温度影响,以及表面改性,通过表面润湿特性的混合,蒸发速率和印刷线的聚结确定。使用这些喷墨印刷PEDOT制造的有机太阳能器件:PSS薄膜显示出可比性的性能,从而产生CA的电力转换效率。与CA相比2.64%。 3.1%,由标准自旋涂层PEDOT:PSS薄膜制造的装置表示。

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