首页> 外文期刊>Beilstein Journal of Nanotechnology >Three-in-one approach towards efficient organic dye-sensitized solar cells: aggregation suppression, panchromatic absorption and resonance energy transfer
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Three-in-one approach towards efficient organic dye-sensitized solar cells: aggregation suppression, panchromatic absorption and resonance energy transfer

机译:高效有机染料敏化太阳能电池的三合一方法:聚集抑制,全色吸收和共振能量转移

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In the present study, protoporphyrin IX (PPIX) and squarine (SQ2) have been used in a co-sensitized dye-sensitized solar cell (DSSC) to apply their high absorption coefficients in the visible and NIR region of the solar spectrum and to probe the possibility of Förster resonance energy transfer (FRET) between the two dyes. FRET from the donor PPIX to acceptor SQ2 was observed from detailed investigation of the excited-state photophysics of the dye mixture, using time-resolved fluorescence decay measurements. The electron transfer time scales from the dyes to TiO2 have also been characterized for each dye. The current–voltage (I–V) characteristics and the wavelength-dependent photocurrent measurements of the co-sensitized DSSCs reveal that FRET between the two dyes increase the photocurrent as well as the efficiency of the device. From the absorption spectra of the co-sensitized photoanodes, PPIX was observed to be efficiently acting as a co-adsorbent and to reduce the dye aggregation problem of SQ2. It has further been proven by a comparison of the device performance with a chenodeoxycholic acid (CDCA) added to a SQ2-sensitized DSSC. Apart from increasing the absorption window, the FRET-induced enhanced photocurrent and the anti-aggregating behavior of PPIX towards SQ2 are crucial points that improve the performance of the co-sensitized DSSC.
机译:在本研究中,原卟啉IX(PPIX)和方酸(SQ2)已用于共敏化染料敏化太阳能电池(DSSC)中,以将其高吸收系数应用于太阳光谱的可见光和NIR区域并探测两种染料之间的Förster共振能量转移(FRET)的可能性。使用时间分辨的荧光衰减测量值,通过对染料混合物激发态光物理的详细研究,观察到了从供体PPIX到受体SQ2的FRET。对于每种染料,也已经表征了从染料到TiO2的电子转移时间标度。共敏DSSC的电流-电压(IV)特性和与波长有关的光电流测量结果表明,两种染料之间的FRET增加了光电流以及器件的效率。从共增感光阳极的吸收光谱中,观察到PPIX可有效地充当共吸附剂并减少SQ2的染料聚集问题。通过将设备性能与添加到SQ2致敏DSSC中的鹅去氧胆酸(CDCA)进行比较,进一步证明了这一点。除了增加吸收窗口外,FRET诱导的增强的光电流和PPIX对SQ2的抗聚集行为是改善共敏DSSC性能的关键点。

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