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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Coupled Optical and Electronic Modeling of Dye-Sensitized Solar Cells for Steady-State Parameter Extraction
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Coupled Optical and Electronic Modeling of Dye-Sensitized Solar Cells for Steady-State Parameter Extraction

机译:染料敏化太阳能电池的稳态光电参数耦合光学和电子建模

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摘要

The design and development of dye-sensitized solar cells (DSCs) is currently often realized on an empirical basis. In view of assisting in this optimization process, we present the framework of a model which consists in a coupled optical and electrical model of the DSC. The experimentally validated optical model, based on a ray-tracing algorithm, allows accurate determination of the internal quantum efficiency of devices, an important parameter that is not easily estimated. Coupling the output of the optical model-the dye absorption rate-to an electrical model for charge generation, transport, and first-order (linear) recombination allows extraction of a set of intrinsic parameters from steady-state photocurrent measurements, such as the diffusion length or the dye electron injection efficiency. Importantly, the sources of optical and electric losses in the device can be separated and quantified (i.e., transmittance, reflectance, absorptance, charge injection, recombination, and potential losses). The model has been validated for two dye systems (Z907 and ClOl) and the strong effect of the presence of Li4" ions in the electrolyte on intrinsic parameters is confirmed. This optoelectronic model of the DSC is a significant step toward a future systematic model-assisted optimization of DSC devices.
机译:染料敏化太阳能电池(DSC)的设计和开发目前通常是凭经验实现的。考虑到协助此优化过程,我们提出了一个模型框架,该模型包含DSC的光电耦合模型。经过实验验证的光学模型基于光线跟踪算法,可以准确确定设备的内部量子效率,这是一个不容易估算的重要参数。将光学模型的输出(染料吸收率)耦合到用于电荷产生,传输和一阶(线性)重组的电模型,可以从稳态光电流测量(例如扩散)中提取一组固有参数长度或染料电子注入效率。重要的是,设备中的光损耗和电损耗的来源可以被分离和量化(即透射率,反射率,吸收率,电荷注入,复合和潜在损耗)。该模型已针对两种染料体系(Z907和ClOl)进行了验证,并且证实了电解质中存在Li4“离子对内在参数的强烈影响。DSC的光电模型是朝未来的系统模型迈出的重要一步-协助优化DSC设备。

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