Mitigating the charge trapping effects of D-sorbitol/poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS) polymer blend contacts to crystalline silicon

IF 2 4区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY
D. Cohen, Esha Thakur, M. Walter
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引用次数: 1

Abstract

Abstract Solution-processable conductive polymers are advantageous materials for making inexpensive, electrical junctions to crystalline semiconductors. We have investigated methods to improve the device performance of hybrid solar cells made from n-type silicon and a conductive polymer glue based on a blend of poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS) and D-sorbitol. The PEDOT:PSS blend behaves like a high work function metal creating a Schottky-type junction. The addition of D-sorbitol increases PEDOT:PSS conductivity and provides adhesive properties, allowing the top contact of the solar cell to be laminated onto the silicon substrate. Unfortunately, the addition of the D-sorbitol to the PEDOT:PSS significantly alters the shape of the measured current-voltage performance curve of a crystalline silicon (n-Si)/PEDOT:PSS junction. Under illumination, this results in a decline in the fill factor (FF) and a drop in photocurrent density (J sc) compared to PEDOT:PSS-only devices. We have discovered that the decline in device performance is likely due to surface trap states caused by D-sorbitol/silicon interaction and/or silicon oxidation. X-ray photoelectron spectroscopic (XPS) analysis shows that surface oxidation quickens, and possible silicon surface functionalization with D-sorbitol occurs while processing the D-sorbitol/PEDOT:PSS contact on H-terminated surfaces. To overcome these interface issues, the silicon surface was chemically modified using surface methylation, making it insensitive to D-sorbitol/silicon interactions and surface oxidation during the processing of the PEDOT:PSS polymer blend contact. This also enabled the crystalline silicon (n-Si)/s-PEDOT:PSS device performance to be maintained for longer periods. Using a silicon surface methylation strategy, good device performance could be achieved without changing the adhesive properties of D-sorbitol/PEDOT:PSS polymer blend.
减轻d -山梨醇/聚(3,4-乙烯二氧噻吩):聚苯乙烯磺酸盐(PEDOT:PSS)聚合物共混接触晶体硅的电荷捕获效应
溶液可加工的导电聚合物是制造廉价的晶体半导体电结的有利材料。我们研究了提高n型硅和基于聚(3,4-乙烯二氧噻吩)、聚(苯乙烯磺酸盐)(PEDOT:PSS)和d -山梨醇共混物的导电聚合物胶混合太阳能电池器件性能的方法。PEDOT:PSS共混物表现得像高功功能金属,形成肖特基型结。d -山梨醇的加入增加了PEDOT:PSS的导电性,并提供了粘合性能,允许太阳能电池的顶部接触层压在硅衬底上。不幸的是,在PEDOT:PSS中添加d -山梨醇会显著改变晶体硅(n-Si)/PEDOT:PSS结的测量电流-电压性能曲线的形状。在照明下,与PEDOT: pss器件相比,这会导致填充因子(FF)的下降和光电流密度(jsc)的下降。我们发现,器件性能的下降可能是由于d -山梨醇/硅相互作用和/或硅氧化引起的表面陷阱状态。x射线光电子能谱(XPS)分析表明,在处理d -山梨醇/PEDOT:PSS在h端表面的接触时,硅表面氧化加速,可能发生与d -山梨醇的表面功能化。为了克服这些界面问题,利用表面甲基化对硅表面进行了化学修饰,使其在PEDOT:PSS聚合物共混接触过程中对d -山梨醇/硅相互作用和表面氧化不敏感。这也使得晶体硅(n-Si)/s-PEDOT:PSS器件的性能可以保持更长的时间。采用硅表面甲基化策略,可以在不改变d -山梨醇/PEDOT:PSS聚合物共混物粘附性能的情况下获得良好的器件性能。
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来源期刊
Pure and Applied Chemistry
Pure and Applied Chemistry 化学-化学综合
CiteScore
4.00
自引率
0.00%
发文量
60
审稿时长
3-8 weeks
期刊介绍: Pure and Applied Chemistry is the official monthly Journal of IUPAC, with responsibility for publishing works arising from those international scientific events and projects that are sponsored and undertaken by the Union. The policy is to publish highly topical and credible works at the forefront of all aspects of pure and applied chemistry, and the attendant goal is to promote widespread acceptance of the Journal as an authoritative and indispensable holding in academic and institutional libraries.
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