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Effects of Ionic Liquid Molecules in Hybrid PbS Quantum Dot-Organic Solar Cells

机译:离子液体分子在杂化PbS量子点有机太阳能电池中的作用

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We investigated the effect of ionic liquid molecules (ILMs) in hybrid quantum dot-organic solar cells (HyQD-OSCs). The insertion of an ILM layer between PbS and phenyl-C61 -butyric acid methyl ester (PCBM) can shift the band edge of PCBM closer to the vacuum level of PbS due to spontaneous dipole polarization. Because of this new architecture, improvements in device performance Were achieved, including increases in open-circuit voltage (V_(oc) from 0.41 V to 0.49 V), fill factor (FF, from 0.48 to 0.59), and power conversion efficiency (PCE, from 1.62% to 2.21%), compared to reference devices under AM 1.5G illumination at 100 mW cm~(-2). We observed that treatment of the PbS layer with ILMs causes a significant increase in work function from 3.58 eV to 3.93 eV. Furthermore, the ILMs layer minimizes the contact resistance between PbS and PCBM due to the improved compatibility between the two layers, confirmed as a decrease in charge transfer resistance, as measured by electrical impedance spectroscopy.
机译:我们研究了离子液体分子(ILMs)在混合量子点有机太阳能电池(HyQD-OSCs)中的作用。由于自发偶极极化,在PbS和苯基-C61丁酸甲酯(PCBM)之间插入ILM层会使PCBM的能带边缘移近PbS的真空水平。由于采用了这种新架构,设备性能得到了改善,包括开路电压(V_(oc)从0.41 V增加到0.49 V),填充系数(FF,从0.48到0.59)和功率转换效率(PCE)的提高。 (从1.62%到2.21%),与在100 mW cm〜(-2)的AM 1.5G照明下的参考设备相比。我们观察到,用ILM处理PbS层会导致功函数从3.58 eV显着增加到3.93 eV。此外,由于两层之间的相容性提高,ILMs层将PbS与PCBM之间的接触电阻最小化,这可以通过电荷阻抗测定法确认,这是电荷转移电阻的降低。

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