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Solution-Processed Transparent Intermediate Layer for Organic Tandem Solar Cell Using Nitrogen-Doped Graphene Quantum Dots

机译:使用氮气掺杂石墨烯量子点的有机串联太阳能电池的解决方案加工透明中间层

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摘要

The solution-processed intermediate layer (IML), which physically and electrically connects two subcells, is critical in the fabrication of efficient organic tandem solar cells. Several studies have examined solution-processed electron transport materials that can be used as n-type layers in the IML. On the other hand, forming an Ohmic contact for holes is limited by the choice of an aqueous-based hole transport layer (HTL) material except for PEDOT:PSS or vacuum evaporating materials. Here, this paper reports highly transparent and solution-processable nitrogen-doped graphene quantum dots (N-GQDs) as an efficient HTL in the IML. Using an IML based on N-GQDs/PEI, the present P3HT:PCBM tandem device showed a slight improvement in the fill factor (10%) and efficiency (15%) compared to the devices using the PEDOT: PSS/PEI-based junction. The optimal tandem cells with N-GQDs showed a double open-circuit voltage of 1.16 V, short-circuit current density of 5.80 mA/cm(2), fill factor of 0.55, and power conversion efficiency of 3.69% under AM 1.5G solar irradiation. This result thus makes a start on the use of functional graphene quantum dots in organic tandem solar cells.
机译:的溶液处理的中间层(IML),其在物理上和电连接两个子电池,是在有效的有机串联太阳能电池的制造是至关重要的。几个研究已经检查了可用于如在IML n型层溶液处理的电子传输材料。在另一方面,形成用于空穴的欧姆接触是通过一种水基的空穴传输层(HTL)的材料,除了PEDOT的选择的限制:PSS或真空蒸发的材料。这里,本文报道高度透明和溶液加工的氮掺杂的石墨烯的量子点(N-GQDs)如在IML的有效HTL。使用基于N- GQDs的IML / PEI,本P3HT:基于PEI-PSS /结:PCBM串联装置相比于使用PEDOT的器件表现出在填充因子(10%)和效率(15%)略有改善。最佳串联电池用N- GQDs显示1.16 V,5.80毫安/平方厘米(2)短路电流密度,0.55填充系数的双开路电压,和在AM1.5G太阳的3.69%的功率转换效率照射。因此,该结果使得在有机串联太阳能电池中使用的石墨烯官能量子点的开始。

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