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Enhancing Si/Organic Hybrid Solar Cells via Optimizing PEDOT:PSS Optical Properties and Anode Surface Contacts

机译:通过优化PEDOT增强SI /有机混合太阳能电池:PSS光学性质和阳极表面触点

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In this paper, we investigate the absorption of organic material (poly(3,4-ethylenedioxythiophene): poly(styrenesulfonate)-PEDOT:PSS), optical properties of silver nanowires (AgNWs), and device performance enhancement of Si nanostructure/PEDOT:PSS hybrid solar cells with diluted PEDOT:PSS and AgNWs. First, silicon nanoholes (SiNHs) are well known as effective structures to reduce solar cell reflectance and enhance light harvesting. However, hole-transport organic material can also absorb light; therefore, the silicon absorption is reduced. The device current is then limited. Although PEDOT: PSS diluted through isopropanol (IPA) can reduce the thickness of PEDOT: PSS and, thus, its absorption, its adhesion to indium tin oxide (ITO) is also degraded. Therefore, here, a set of metal grids is used to replace the ITO, but its series resistance is increased due to the long path of carriers passing the thin nanostructured PEDOT:PSS morphology. We hence further added AgNWs to improve the contact between PEDOT: PSS and the metal grid. The results show that, through the dilution by IPA, the absorption of PEDOT: PSS was reduced to the value near zero, and power conversion efficiency (PCE) enhanced from 10.09% to 12.01%. With the anode of the AgNW/Ag grid and optimized PEDOT:PSS, the performance of SiNH/PEDOT:PSS hybrid solar cells reaches a PCE of 14.56%, a short-circuit current density (J(sc)) of 35.55 mA/cm(2), an open-circuit voltage (V-oc) of 0.574 V, and a fill factor of 71.37%. This paper provides a simple method to optimize Si/organic hybrid solar cells.
机译:在本文中,我们研究了有机材料的吸收(聚(3,4-亚乙基二氧噻吩):Poly(苯乙烯磺酸盐) - 滴度:PSS),银纳米线(AgNWS)的光学性质,以及Si纳米结构/佩特的装置性能提高: PSS杂交太阳能电池与稀释的PEDOT:PSS和AGNW。首先,硅纳米孔(SINHS)是众所周知的有效结构,以降低太阳能电池反射率和增强光收获。然而,空穴传输有机材料也可以吸收光线;因此,硅吸收降低。然后设备电流限制。虽然PEDOT:通过异丙醇(IPA)稀释的PSS可以减少PEDOT的厚度:PSS,因此,其吸收,其对氧化铟锡(ITO)的粘附也降低。因此,这里,通过通过通过薄纳米结构PEDOT的载体的长路径增加,使用一组金属网格替换ITO,但其串联电阻增加:PSS形态。因此,我们进一步添加了AGNW,以改善PEDOT:PSS和金属网格之间的接触。结果表明,通过IPA的稀释,PETOT的吸收:PSS降低到零附近的值,功率转换效率(PCE)从10.09%增强至12.01%。随着AGNW / AG电网和优化PEDOT的阳极:PSS,SINH / PEDOT的性能:PSS杂交太阳能电池达到14.56%的PCE,短路电流密度(J(SC))为35.55 mA / cm (2),开路电压(V-OC)为0.574 V,填充因子为71.37%。本文提供了一种优化Si /有机混合太阳能电池的简单方法。

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