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Simulation Analysis of Thermal Degradation in Graphene Back Contacted CdTe Ultrathin Films

机译:石墨烯背面接触CdTe超薄膜的热降解模拟分析

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摘要

Simulation analysis of the thermal degradation in performance of a graphene back contacted CdS/CdTe ultrathin film solar cell is performed using Solar Cell Capacitance Simulator. The application of the graphene nanolayer on the CdTe materials is interesting because of its cheaper cost, excellent electronic properties, and optical advantages. Degradation of a CdTe thin-film photovoltaics is mostly driven from the metallic back contacts. The graphene carbon–carbon network can reduce the extra interdiffusion of the metallic ions from the metallic back contacts to the front contact through the gran boundaries. The number of graphene layers determines the resistivity of this layer at the contact. This resistivity changes under the thermal stress. Thus, we investigate the degradation of the device metrics under thermal stress and compare it with the few experimental data reported in the literature.
机译:使用太阳能电池电容模拟器对石墨烯背面接触的CdS / CdTe超薄膜太阳能电池的性能进行热降解的仿真分析。石墨烯纳米层在CdTe材料上的应用很有趣,因为它的价格便宜,电子性能优异且具有光学优势。 CdTe薄膜光伏电池的降解主要是由金属背接触引起的。石墨烯碳-碳网络可以减少金属离子从金属背触点到前触点通过晶界的额外相互扩散。石墨烯层的数量决定了该层在接触处的电阻率。该电阻率在热应力下变化。因此,我们研究了在热应力下器件尺寸的降低,并将其与文献中报道的少量实验数据进行了比较。

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