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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Cost-effective ITO-free organic solar cells with silver nanowire-PEDOT: PSS composite electrodes via a one-step spray deposition method
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Cost-effective ITO-free organic solar cells with silver nanowire-PEDOT: PSS composite electrodes via a one-step spray deposition method

机译:具有银纳米线-PEDOT的高性价比,不含ITO的有机太阳能电池:通过一步喷涂法沉积的PSS复合电极

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摘要

We demonstrate cost-effective, indium tin oxide (ITO)-free organic solar cells (OSCs) fabricated with a silver nanowire (AgNW)-poly(3,4-ethyIenedioxythiophene):poIy(styrenesuIfonate) (PEDOT:PSS) composite electrode. The composite films were prepared with a one-step spray-coating of a mixture composed of AgNW and a highly conductive, dimethylsulfoxide (DMSO)-treated PEDOT:PSS (hcPEDOT). The film-thickness, optical transmittance, and sheet resistance of AgNW-hcPEDOT hybrid electrodes were easily controlled by varying the spray deposition time. With AgNW-hcPEDOT composite electrodes, the devices exhibited high power conversion efficiencies of up to 2.16% under 100 mW cm~(-2) and AM 1.5G illumination conditions. In addition, the surface of the AgNW-hcPEDOT composite electrodes was further smoothened with an additional spray-coated PEDOT:PSS buffer layer, leading to reduced shorting and improved cell-efficiency. As a result, the best performing devices with a AgNW-hcPEDOT electrode and spray-coated PEDOT buffer exhibited efficiencies of up to 2.65%, which approaches that of conventional ITO-based devices. These results indicate that the one-step spray-coated AgNW-hcPEDOT composite-based film is a viable alternative to the high-cost and vacuum-deposited ITO for mass-production and low-cost roll-to-roll based solar cells.
机译:我们演示了用银纳米线(AgNW)-聚(3,4-乙撑二氧噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS)复合电极制造的经济高效,无铟锡氧化物(ITO)的有机太阳能电池(OSC)。复合薄膜是通过一步喷涂由AgNW和高导电性,二甲基亚砜(DMSO)处理的PEDOT:PSS(hcPEDOT)组成的混合物制备的。通过改变喷涂时间,可以轻松控制AgNW-hcPEDOT混合电极的膜厚,透光率和薄层电阻。使用AgNW-hcPEDOT复合电极,该器件在100 mW cm〜(-2)和AM 1.5G照明条件下表现出高达2.16%的高功率转换效率。此外,AgNW-hcPEDOT复合电极的表面进一步用喷涂的PEDOT:PSS缓冲层进行了平滑处理,从而减少了短路并提高了电池效率。结果,具有AgNW-hcPEDOT电极和喷涂PEDOT缓冲液的性能最好的设备显示出高达2.65%的效率,接近传统的基于ITO的设备。这些结果表明,一步喷涂AgNW-hcPEDOT复合材料基薄膜是用于大规模生产和低成本卷对卷太阳能电池的高成本,真空沉积ITO的可行替代品。

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