Ghahremanirad Elnaz, Bou Agustín, Olyaee Saeed, Bisquert Juan
Institute of Advanced Materials (INAM), Universitat Jaume I , 12006 Castelló, Spain.
Nano-photonics and Optoelectronics Research Laboratory (NORLab), Shahid Rajaee Teacher Training University , 16788-15811 Lavizan, Tehran, Iran.
J Phys Chem Lett. 2017 Apr 6;8(7):1402-1406. doi: 10.1021/acs.jpclett.7b00415. Epub 2017 Mar 15.
The analysis of perovskite solar cells by impedance spectroscopy has provided a rich variety of behaviors that demand adequate interpretation. Two main features have been reported: First, different impedance spectral arcs vary in combination; second, inductive loops and negative capacitance characteristics appear as an intrinsic property of the current configuration of perovskite solar cells. Here we adopt a previously developed surface polarization model based on the assumption of large electric and ionic charge accumulation at the external contact interface. Just from the equations of the model, the impedance spectroscopy response is calculated and explains the mentioned general features. The inductance element in the equivalent circuit is the result of the delay of the surface voltage and depends on the kinetic relaxation time. The model is therefore able to quantitatively describe exotic features of the perovskite solar cell and provides insight into the operation mechanisms of the device.
通过阻抗谱对钙钛矿太阳能电池进行分析,揭示了丰富多样的行为,需要进行充分解读。已报道了两个主要特征:其一,不同的阻抗谱弧以不同组合变化;其二,电感环和负电容特性作为钙钛矿太阳能电池当前结构的固有属性出现。在此,我们采用先前开发的表面极化模型,该模型基于外部接触界面处存在大量电荷积累的假设。仅从该模型的方程出发,就能计算出阻抗谱响应,并解释上述一般特征。等效电路中的电感元件是表面电压延迟的结果,且取决于动力学弛豫时间。因此,该模型能够定量描述钙钛矿太阳能电池的奇异特性,并深入了解该器件的运行机制。