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界面层溶液处理的有机太阳能电池特性描述中的一个关键问题。

One key issue in characterization of organic solar cells with solution processed interfacial layers.

机构信息

Key Laboratory of Luminescence and Optical Information, Ministry of Education, Beijing Jiaotong University, Beijing, 100044, P. R. China.

出版信息

Phys Chem Chem Phys. 2019 Mar 6;21(10):5790-5795. doi: 10.1039/c9cp00181f.

Abstract

Solution processed interfacial layers are commonly employed in bulk heterojunction organic solar cells (OSCs) for better charge collection. PDIN interfacial layers were prepared by employing a static or dynamic spin coating method from PDIN methanol solution, and defined as the S-PDIN or D-PDIN layer. The OSCs with a S-PDIN layer exhibit 13.88% power conversion efficiency (PCE) with a virtual high short circuit density (JSC) of 26.45 mA cm-2 and relatively low fill factor (FF) of 58.94% during the current density versus voltage (J-V) measurement without a shadow mask. 12.56% PCE is achieved for OSCs with a D-PDIN layer, along with a JSC of 18.85 mA cm-2 and FF of 74.88%. Over 77% FFs are obtained for OSCs with a S-PDIN or D-PDIN layer during J-V measurement with a shadow mask, and both OSCs exhibit a very similar JSC and PCE. The virtual high JSCs and relatively low FF of OSCs with a S-PDIN layer may be due to the enhanced conductivity of PEDOT:PSS during preparation of the PDIN layer by the SSC method, which can be further confirmed from the OSCs with a methanol treated PEDOT:PSS layer. This work indicates that a well-balanced JSC and FF should be an important evaluating indicator for efficient OSCs, and an appropriate shadow mask is necessary to measure the J-V curves of OSCs with a solution processed interfacial layer.

摘要

界面处理层通常用于体异质结有机太阳能电池(OSC)中,以改善电荷收集。通过采用静态或动态旋涂方法,从 PDIN 甲醇溶液中制备 PDIN 界面层,并将其定义为 S-PDIN 或 D-PDIN 层。采用 S-PDIN 层的 OSC 在没有阴影掩模的情况下,在电流密度与电压(J-V)测量中表现出 13.88%的功率转换效率(PCE),虚拟短路密度(JSC)为 26.45 mA cm-2,填充因子(FF)相对较低,为 58.94%。采用 D-PDIN 层的 OSC 的 PCE 为 12.56%,JSC 为 18.85 mA cm-2,FF 为 74.88%。采用 S-PDIN 或 D-PDIN 层的 OSC 在使用阴影掩模进行 J-V 测量时,FF 超过 77%,并且两个 OSC 的 JSC 和 PCE 非常相似。采用 S-PDIN 层的 OSC 具有较高的虚拟 JSC 和相对较低的 FF,可能是由于 SSC 方法制备 PDIN 层时 PEDOT:PSS 的电导率增强,这可以从采用甲醇处理的 PEDOT:PSS 层的 OSC 中得到进一步证实。这项工作表明,平衡的 JSC 和 FF 应该是高效 OSC 的一个重要评价指标,并且需要适当的阴影掩模来测量具有溶液处理界面层的 OSC 的 J-V 曲线。

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