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Simulation of Electron Diffusion Coefficient Interpretation on the Optimum Thickness of TiO2 Photoanode in Dye-Sensitized Solar Cell (DSSC)

机译:染料敏化太阳能电池(DSSC)中TiO2光电优化厚度的电子扩散系数解释模拟

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DSSC is a natural dye-based organic solar cell composed of layers of semiconductor (photoanode), dye, electrolyte, and the counter electrode. The photoanode layer on DSSC acts as a dye binder and can pass on excited electrons to the electrode counter. This component is one of the keys to improve the DSSC performance. The TiOz material has been used widely as a photoanode due to its high stability to light so that at its optimum thickness it can pass well the sunlight energy on the surface of the DSSC. When the sunlight energy impinges to DSSC for relatively long time, it can increase the working temperature. Theoretically, the increase in the working temperature of the DSSC causes an increase in the electron diffusion coefficient in the DSSC, thus affecting its performance. Therefore, the interpretation of an increase in the electron diffusion coefficient due to an increase in the thickness and working temperature in DSSC is essential to be studied. In this article, a simulation of the determination of the optimum thickness of TiO2 photoanode was carried out. We studied the effect of electron diffusion coefficient on the DSSC open voltage at the optimum thickness. The highest electron diffusion coefficient in this simulation was 9.65x10~(-3) cm~2/s with current density of 0.0145 A/cm~2, voltage of 0.3411 V, power of 0.0020 V·A/cm~2, and efficiency of 2.000%. We found that the higher the electron diffusion coefficient, the open voltage of DSSC increased so that its performance also increased.
机译:DSSC是由半导体(光电码),染料,电解质和对电极组成的基于天然染料的有机太阳能电池。 DSSC上的PhotoNode层用作染料粘合剂,可以将激励电子传递给电极计数器。此组件是提高DSSC性能的键之一。由于其高光稳定性,TiOz材料被广泛地用作光电极,使其在其最佳厚度下,它可以在DSSC的表面上良好地通过阳光能量。当Sunlight Energy相对较长的时间撞击DSSC时,它可以增加工作温度。从理论上讲,DSSC的工作温度的增加导致DSSC中的电子扩散系数增加,从而影响其性能。因此,由于DSSC中的厚度和工作温度的增加,电子扩散系数增加的解释是必不可少的。在本文中,执行了测定TiO2光电的最佳厚度的模拟。我们研究了电子扩散系数在最佳厚度下对DSSC开路电压的影响。该模拟中最高电子扩散系数为9.65x10〜(-3)cm〜2 / s,电流密度为0.0145a / cm〜2,电压为0.3411 V,功率为0.0020 V·A / cm〜2,效率2.000%。我们发现电子扩散系数越高,DSSC的开放电压增加,使其性能也增加。

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