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Synthesis and photovoltaic properties of organic photosensitizer using D-pi-D type 4, 5-diazafluorene ligand and derivatives for efficient dye-sensitized solar cell

机译:D-pi-D型4、5-二氮芴芴配体及其衍生物的有机光敏剂的合成及其光电性能,用于高效染料敏化太阳能电池

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In this paper, we synthesized and characterized ligand and complexes (Zn and Ru) and studied photovoltaic properties for dye-sensitized solar cells (DSSC) of new substances substituted with 4,5-Diazafluorene groups. The structural of the compounds were determined by FTIR, UV-Vis Spectrometer, H NMR, MS spectroscopic data and elemental analysis. The photovoltaic and electrochemical properties of these compounds were investigated and the applicability of these synthesized compounds in DSSCs as photosensitizers was studied. The photovoltaic cell efficiencies (PCE) of the devices were in the range of 0.580-2.015% under simulated AM 1.5 solar irradiation of 100 mW/cm(2), and the highest open-circuit voltage (V-oc) reached 0.34 V. When comparing the photovoltaic performance of the three DSSC devices, it seen that PCE assumes the following: DF-Ru > DF-Zn > DF. The PCE value of 2.015% (short photocurrent density, Jsc = 18.82 mA/cm(2), V-oc = 0.34 V, and fill factor, FF = 0.315) was obtained with a DSSC based on DF-Ru under AM irradiation (100 mW/cm(2)). DSSC based on DF-Zn produced efficiency of 1.430% whereas DSSC based DF exhibited the device performance with efficiency of 0.580% under illumination. These results suggest that DF-Zn and DF-Ru complexes displayed better photovoltaic activity than pure DF under visible light irradiation. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在本文中,我们合成并表征了配体和配合物(Zn和Ru),并研究了被4,5-二氮杂芴基取代的新物质的染料敏化太阳能电池(DSSC)的光伏性能。通过FTIR,UV-Vis光谱仪,1 H NMR,MS光谱数据和元素分析确定化合物的结构。研究了这些化合物的光电性质和电化学性质,并研究了这些合成的化合物在DSSC中作为光敏剂的适用性。在100 mW / cm(2)的模拟AM 1.5太阳辐射下,该设备的光伏电池效率(PCE)在0.580-2.015%的范围内,最高开路电压(V-oc)达到0.34 V.比较三个DSSC器件的光伏性能时,可以看到PCE假定以下条件:DF-Ru> DF-Zn> DF。使用基于DF-Ru的DSSC在AM辐照下获得PCE值为2.015%(短光电流密度,Jsc = 18.82 mA / cm(2),V-oc = 0.34 V,填充系数,FF = 0.315)( 100 mW / cm(2))。基于DF-Zn的DSSC产生的效率为1.430%,而基于DSSC的DF在照明下的器件性能为0.580%。这些结果表明,在可见光照射下,DF-Zn和DF-Ru络合物显示出比纯DF更好的光伏活性。 (C)2016 Elsevier Ltd.保留所有权利。

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