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Application of Low-Pressure Assisted Coating Method of PEDOT:PSS on Silicon Nanostructures to Form Thorough Organic/Inorganic Junction

机译:PEDOT:PSS低压辅助涂覆方法在硅纳米结构上形成完整的有机/无机结的应用

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This work explores low-pressure assisted (LPA) method to improve coverage of solution-processed poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOTPSS) coated on silicon nanostructures (SiNS) to form thorough junction of hybrid solar cells. Previously, spin-coating is the most common process. However, it suffers incomplete coating profiles. Here we develop a modified technique to overcome this problem. In the beginning, both Si nanowire (SiNW) and Si nanohole (SiNH) arrays, fabricated by metal-assisted chemical etching, are placed on a holder inside a chamber, which is evacuated with a pump. PEDOTPSS is also dropped on the same holder, which is first tilted to clearly separate SiNS and PEDOTPSS. Afterwards, pump out the air in wire gaps or nanoholes, and then tilt the holder to make PEDOTPSS flow toward SiNWs or SiNHs. Due to air vacancy in SiNS, PEDOTPSS can infiltrate into wire gaps or nanoholes fluently. Finally, PEDOTPSS covered SiNWs and SiNHs are combined with ITO coated glass to form Si/organic hybrid solar cells. The results show that NW device with LPA method, power conversion efficiency (PCE), FF, R_s and R_(sh) are 10.87%, 71.75%, 1.93 Ω cm~2, and 943 Ω cm~2. For NH devices with LPA method, PCE, FF, R_s and R_(sh) are 10.13%, 69.45%, 2,43 Ω cm~2, and 980 Ω cm~2.
机译:这项工作探索了低压辅助(LPA)方法,以提高涂覆在硅纳米结构(SiNS)上的溶液处理的聚(3,4-乙撑二氧噻吩):聚(苯乙烯磺酸盐)(PEDOTPSS)的覆盖率,从而形成混合太阳能电池的彻底结。以前,旋涂是最常见的过程。但是,它的涂层轮廓不完整。在这里,我们开发了一种改进的技术来克服此问题。首先,将通过金属辅助化学刻蚀制造的Si纳米线(SiNW)和Si纳米孔(SiNH)阵列都放置在腔室内的支架上,该支架通过泵抽成真空。 PEDOTPSS也掉落在同一支架上,该支架首先倾斜以将SiNS和PEDOTPSS清楚地分开。然后,将空气抽入线隙或纳米孔中,然后倾斜支架,使PEDOTPSS流向SiNW或SiNH。由于SiNS中的空位,PEDOTPSS可以流畅地渗透到线隙或纳米孔中。最后,将PEDOTPSS覆盖的SiNW和SiNH与ITO涂层玻璃结合起来,形成Si /有机混合太阳能电池。结果表明,采用LPA方法的NW器件的功率转换效率(PCE),FF,R_s和R_(sh)分别为10.87%,71.75%,1.93Ωcm〜2和943Ωcm〜2。对于采用LPA方法的NH器件,PCE,FF,R_s和R_(sh)分别为10.13%,69.45%,2.43Ωcm〜2和980Ωcm〜2。

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