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染料敏化太阳能电池电流-电压曲线和时变特性模拟的连续性方程。

A continuity equation for the simulation of the current-voltage curve and the time-dependent properties of dye-sensitized solar cells.

机构信息

Área de Química Física, Universidad Pablo de Olavide, E-41013, Sevilla, Spain.

出版信息

Phys Chem Chem Phys. 2012 Aug 7;14(29):10285-99. doi: 10.1039/c2cp40719a. Epub 2012 Jun 26.

Abstract

A numerical model that simulates the steady-state current-voltage curve and the time-dependent response of a dye-sensitized solar cell with a single continuity equation is derived. It is shown that the inclusion of the multiple-trapping model, the quasi-static approximation and non-linear recombination kinetics leads to a continuity equation for the total electron density in the photoanode with an electron density-dependent diffusion coefficient and a density-dependent pseudo-first order recombination constant. All parameters in the model can be related to quantities accessible experimentally. The required power exponents are taken from impedance spectroscopy measurements at different voltages. The model provides new insights into the physical interpretation of the power exponents. Modeling examples involving a high-efficiency TiO(2)-based dye solar cell and a ZnO-based dye solar cell are presented. It is demonstrated that the model reproduces the transient behavior of the cell under small perturbations. The spatial dependence of the recombination rate and the influence of film thickness and of voltage dependent injection efficiency on cell performance are studied. The implications of the model are discussed in terms of efficiencies potentially attainable in dye-sensitized solar cells and other kinds of solar cells with a diffusional mechanism of charge transport.

摘要

推导出了一个数值模型,该模型可以模拟染料敏化太阳能电池的稳态电流-电压曲线和时变响应,其中只包含一个连续方程。结果表明,包含多陷阱模型、准静态近似和非线性复合动力学会导致光电阳极中的总电子密度的连续性方程,其中电子密度相关的扩散系数和密度相关的准一级复合常数。模型中的所有参数都可以与实验中可获得的量相关联。所需的功率指数是从不同电压下的阻抗光谱测量中获取的。该模型为功率指数的物理解释提供了新的见解。本文提出了涉及高效 TiO(2)基染料太阳能电池和 ZnO 基染料太阳能电池的建模示例。结果表明,该模型可以再现小扰动下电池的瞬态行为。研究了复合速率的空间依赖性以及薄膜厚度和电压相关注入效率对电池性能的影响。根据染料敏化太阳能电池和其他具有扩散电荷输运机制的太阳能电池可能达到的效率,讨论了该模型的意义。

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