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Modeling of Fabricated NiO/TiO_2 P-N Heterojunction Solar Cells

机译:制造NIO / TIO_2 P-N异质结太阳能电池的建模

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This paper reports modelling and theoretical validation of a fabricated NiO/TiO_2 P-N heterojunction solar cell. The solar cell equations were modelled and thereafter theoretical validation of the fabricated solar cells was performed. Modelling tools were used to validate the influence of NiO material features such as deposition temperature, voltage and defect densities on the performances of an ITO/TiO_2/NiO heterojunction solar cell structure. The working points used included a temperature of 350°C, illumination of 1000 W/m~2 using an AM1.5 lamp, with voltage range of 0 to 1.5 volts. The output gave V_(oc) of 0.1445 V, J_(sc) of 247.959195E-6 mA/cm~2 and FF of 37.87% and Voc 0.7056 and J_(sc) 28.366911 mA/cm~2 when both contacts were added. This opens a new frontier for modelling of metal oxide based thin film solar cells especially NiO thin film solar cells. These findings enhance the quest to develop affordable and sustainable energy and encourage further research in solar cell technologies in low-income countries.
机译:本文报道了制造的NIO / TiO_2 P-N异质结太阳能电池的建模和理论验证。太阳能电池方程被建模,然后进行制造的太阳能电池的理论验证。建模工具用于验证NIO材料特征的影响,例如沉积温度,电压和缺陷密度对ITO / TIO_2 / NIO异质结太阳能电池结构的性能的影响。使用的工作点包括350°C的温度,使用AM1.5灯照明1000W / m〜2,电压范围为0至1.5伏。输出给出0.1445 V,J_(SC)的V_(OC)为247.959195E-6MA / cm〜2和FF,37.87%和VOC 0.7056和J_(SC)28.366911 mA / cm〜2。这为基于金属氧化物的薄膜太阳能电池尤其是NiO薄膜太阳能电池的建模开辟了新的前沿。这些调查结果提高了开发实惠且可持续的能源的追求,并鼓励低收入国家的太阳能电池技术进一步研究。

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