Key Laboratory of Luminescence and Optical Information, Ministry of Education, Beijing Jiaotong University, Beijing, 100044, P. R. China.
Phys Chem Chem Phys. 2019 Mar 6;21(10):5790-5795. doi: 10.1039/c9cp00181f.
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.
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。