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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >The pivotal role of TiO2 layer thickness in optimizing the performance of TiO2/P-Si solar cell
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The pivotal role of TiO2 layer thickness in optimizing the performance of TiO2/P-Si solar cell

机译:TiO2层厚度在优化TiO2 / P-Si太阳能电池性能方面的枢转作用

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In the present framework, the TiO2 thin film at different thicknesses (where d = 100, 120, 140, 160, 180, and 200 nm) has been successfully synthesized using the well-known thermal evaporation technique. The thickness of TiO2 layer has been monitored utilizing the quartz crystal monitor (type-FTM4, Edwards). The effect of TiO2 film's thickness on the structural, optical, electrical and photovoltaic properties has been investigated. The structural parameters of TiO2 layer such as the lattice strain, and the crystalline size, D have been computed utilizing the XRD pattern. According to the results of the XRD, it has been found that the crystalline size has been increased while the lattice stress decreased as the thickness of the TiO2 layer increased. The results of SEM have been shown that as the TiO2 film's thickness increases, the grain size improves. On the other hand, the values of the optical bandgap decreases as the thickness of the film increases. The energy diagram of TiO2 layer and also for the fabricated solar cell have been plotted. The capacitance-voltage (C-V) characteristics have been studied to determine the type of the heterojunction (sharp or gradual). According to such measurements, the built-in-voltage, the width of the depletion region, and the maximum electric field have been extracted. The polarization dependence of an electric field has been investigated. As well, the significant influence of TiO2 layer on optimizing the performance of the TiO2/p-Si solar cell has been also studied. The dark and illuminated current density-voltage (J-V) characteristics for the fabricated solar cell has been studied. The Ohmic, SCLC regions and the transition voltage have been determined. The parameters of the TiO2/P-Si solar cell such as the rectification ratio, RR, the junction resistance and the parasitic resistances have been studied. Furthermore, it has been found that the power conversion efficiency PCF and the fill factor FF of the heterojunction have been increased with increasing the thickness of TiO2 layer. Finally, the temperature dependence of the open-circuit voltage (V-OC) has been studied to estimate the activation energy as a function of the thickness of TiO2 layer in the fabricated system. (C) 2021 Elsevier B.V. All rights reserved.
机译:在本框架中,使用众所周知的热蒸发技术成功合成了不同厚度(其中d=100、120、140、160、180和200 nm)的TiO2薄膜。已使用石英晶体监测器(爱德华兹FTM4型)监测TiO2层的厚度。研究了TiO2薄膜厚度对其结构、光学、电学和光伏性能的影响。利用XRD图谱计算了TiO2层的结构参数,如晶格应变和晶粒尺寸D。根据XRD结果,发现随着TiO2层厚度的增加,晶粒尺寸增大,晶格应力减小。SEM结果表明,随着TiO2薄膜厚度的增加,晶粒尺寸也随之改善。另一方面,光学带隙值随着薄膜厚度的增加而减小。绘制了TiO2层的能量图,以及制作的太阳能电池的能量图。研究了电容-电压(C-V)特性,以确定异质结的类型(尖锐或渐变)。根据这些测量结果,提取了内建电压、耗尽区宽度和最大电场。研究了电场的极化依赖性。此外,还研究了TiO2层对优化TiO2/p-Si太阳能电池性能的重要影响。研究了所制备的太阳能电池的暗电流密度-电压(J-V)和光电流密度-电压(J-V)特性。确定了欧姆区、SCLC区和过渡电压。研究了TiO2/P-Si太阳电池的整流比、RR、结电阻和寄生电阻等参数。此外,发现异质结的功率转换效率PCF和填充因子FF随着TiO2层厚度的增加而增加。最后,研究了开路电压(V-OC)的温度依赖性,以估算活化能作为所制备系统中TiO2层厚度的函数。(c)2021爱思唯尔B.V.保留所有权利。

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