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Spectral responsivity measurements of DSSC devices at low chopping frequency (1 Hz)

机译:在低斩波频率(1 Hz)下DSSC设备的光谱响应度测量

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摘要

Dye-sensitized Solar Cells (DSSCs) are generally known to possess a slow response time for photocurrent generation by incident light. Electrical power measurements can only be accurately made if sufficient time is allowed to complete photocurrent generation, in contrast to the case of c-Si solar cells. There are two methods which can satisfactorily measure the spectral responsivity (SR) of DSSCs, i.e., the “AC method” and “DC method”. Of these two, the AC method in the IEC 60904-8 standard is the normal procedure for SR measurement of solar cells. A new setup implemented at ESTI for the spectral responsivity measurement of DSSCs is presented, making use of a low frequency (≤1 Hz) chopped monochromatic beam produced from a continuous broadband light source with band-pass filters and lock‐in technique for measurements of the signals. The beam is projected onto the device under test (DUT) and superimposed over continuous white bias light. The procedure for the determination of the absolute spectral responsivity is presented, and the influence of the slow response for photocurrent generation typical of DSSC devices is investigated. The results obtained with the new setup for standard c-Si solar cells and DSSCs are reported and discussed, providing a validation of the system.
机译:众所周知,染料敏化太阳能电池(DSSC)对于入射光产生的光电流具有较慢的响应时间。与c-Si太阳能电池相反,只有在有足够的时间完成光电流产生的情况下,才能精确地进行电功率测量。有两种方法可以令人满意地测量DSSC的光谱响应度(SR),即“ AC方法”和“ DC方法”。在这两种方法中,IEC 60904-8标准中的AC方法是太阳能电池SR测量的常规程序。提出了一种在ESTI实施的用于DSSC光谱响应度测量的新设置,该方法利用了低频(≤1Hz)斩波单色光束,该光束是通过带通滤光片和锁定技术测量连续宽带光源产生的信号。光束被投射到被测设备(DUT)上并叠加在连续的白色偏置光上。给出了确定绝对光谱响应度的程序,并研究了慢响应对DSSC器件典型的光电流产生的影响。报告并讨论了使用新的标准c-Si太阳能电池和DSSC装置获得的结果,并对系统进行了验证。

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