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Photovoltaic and capacitance measurements of solar cells comprise of Al-doped CdS (QD) and hierarchical flower-like TiO 2 nanostructured electrode

机译:太阳能电池的光伏和电容测量包括Al-掺杂Cds(QD)和等级花样TiO 2 纳米结构电极

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This work focuses on the performance of Al-doped CdS quantum dot (QD)/TiO2solar cells. The devices were analyzed through current-voltage and capacitance-voltage measurements. It was observed from the analysis of absorption spectra that TiO2nanowires improve the absorption of light of Al doped CdS QDs both in visible and near infrared (NIR) range. Current-voltage characteristics curve of Al doped CdS/TiO2at different illuminations show that decrease in illumination (from 100 to 5?mW/cm2), affects the voltage and current correspondingly. Power-voltage curve at various intensities of light indicates that power of the solar cell increases with the increase of the bias voltage and reaches its maximum value at each value of light illumination intensity. The peak value of power at maximum illumination is 35?μW at 0.20?V and with decreasing illumination the peak value decreases. Capacitance-voltage measurements reveal that by increasing the bias voltage from ?2.0?V to 0?V, the capacitance voltage indicates the rising trend. However, at 5?kHz and 10?kHz frequencies, it was observed that a marginal increase of capacitance was noticed with exceeding bias voltage. The results revealed that subsequent addition of the TiO2nanowires significantly improved the output performance of QDSSC.
机译:这项工作侧重于Al-掺杂Cds量子点(QD)/ TiO2Solar细胞的性能。通过电流电压和电容 - 电压测量分析器件。从吸收光谱分析观察到TiO2NanoWires改善Al掺杂CDS QD的吸收,无论是可见和近红外(NIR)范围。 Al掺杂CDS / TiO2AT的电流 - 电压特性曲线不同的照明表明,照明(从100到5?MW / cm2)降低,相应地影响电压和电流。各种强度下的功率电压曲线表示太阳能电池的功率随着偏置电压的增加而增加,并且在光照射强度的每个值下达到其最大值。在最大照明处的功率峰值为35ΩμW,在0.20Ωv并随着峰值的降低而降低。电容 - 电压测量揭示了通过将偏置电压从Δ2.0≤v到0≤v增加,电容电压表示上升趋势。但是,在5?KHz和10?KHz频率下,观察到,通过超过偏置电压,注意到电容的边际增加。结果表明,随后的加入TiO2Nanowires显着提高了QDSSC的输出性能。

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