Guo Xiao-Zhi, Luo Yan-Hong, Zhang Yi-Duo, Huang Xiao-Chun, Li Dong-Mei, Meng Qing-Bo
Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China.
Rev Sci Instrum. 2010 Oct;81(10):103106. doi: 10.1063/1.3488456.
An experimental setup is built for the measurement of monochromatic incident photon-to-electron conversion efficiency (IPCE) of solar cells. With this setup, three kinds of IPCE measuring methods as well as the convenient switching between them are achieved. The setup can also measure the response time and waveform of the short-circuit current of solar cell. Using this setup, IPCE results of dye-sensitized solar cells (DSCs) are determined and compared under different illumination conditions with each method. It is found that the IPCE values measured by AC method involving the lock-in technique are sincerely influenced by modulation frequency and bias illumination. Measurements of the response time and waveform of short-circuit current have revealed that this effect can be explained by the slow response of DSCs. To get accurate IPCE values by this method, the measurement should be carried out with a low modulation frequency and under bias illumination. The IPCE values measured by DC method under the bias light illumination will be disturbed since the short-circuit current increased with time continuously due to the temperature rise of DSC. Therefore, temperature control of DSC is considered necessary for IPCE measurement especially in DC method with bias light illumination. Additionally, high bias light intensity (>2 sun) is found to decrease the IPCE values due to the ion transport limitation of the electrolyte.
搭建了一个用于测量太阳能电池单色入射光子到电子转换效率(IPCE)的实验装置。利用该装置,实现了三种IPCE测量方法以及它们之间的便捷切换。该装置还可以测量太阳能电池短路电流的响应时间和波形。使用该装置,在不同光照条件下,用每种方法测定并比较了染料敏化太阳能电池(DSC)的IPCE结果。发现采用涉及锁相技术的交流方法测量的IPCE值受调制频率和偏置光照的影响很大。短路电流响应时间和波形的测量结果表明,这种影响可以用DSC的缓慢响应来解释。为了通过该方法获得准确的IPCE值,测量应在低调制频率和偏置光照下进行。在偏置光照下用直流方法测量的IPCE值会受到干扰,因为由于DSC温度升高,短路电流会持续随时间增加。因此,特别是在有偏置光照的直流方法中,DSC的温度控制对于IPCE测量是必要的。此外,发现高偏置光强度(>2太阳)由于电解质的离子传输限制会降低IPCE值。