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Synthesis of conjugated polymers with broad absorption bands and photovoltaic properties as bulk heterojuction solar cells

机译:具有宽吸收带和光伏特性的共轭聚合物作为整体异质结太阳能电池的合成

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摘要

Two new broad absorbing alternating copolymers, poly[1-(2,6- diisopropylphenyl)-2,5-bis(2-thienyl)pyrrole-alt-4,7-bis(3-octyl-2-thienyl) benzothiadiazole] (PTPTTBT-P1) and poly[1-(p-octylphenyl)-2,5-bis(2-thienyl) pyrrole-alt-4,7-bis(3-octyl-2-thienyl)benzothiadiazole] (PTPTTBT-P2), were prepared via Suzuki polycondensation with high yields. The two polymers were found to show characteristic absorption in the visible region of the solar spectrum. Interestingly the absorption of PTPTTBT-P1 was found to cover the visible region from 350 to 650 nm with the broad and flat absorption maximum from 440 to 510 nm in film and the absorption of PTPTTBT-P2 was found to cover the visible region from 350 to 950 nm with the relatively distinct absorption maxima at 425 and 522 nm and very weak absorption maximum at 832 nm in film. The electrochemical band gaps of the polymers were calculated to be 1.88 eV and 1.87 eV, respectively, while the optical band gaps of the polymers were calculated to be 1.94 eV and 1.87 eV, respectively. The photovoltaic properties of polymers were investigated with bulk heterojunction (BHJ) solar cells fabricated in ITO/PEDOT:PSS/polymer:PC_(70)BM(1:5 wt%)/TiOx/Al configurations. The maximum power conversion efficiency (PCE) of the solar cell composed of PTPTTBT-P1:PC_(70)BM as an active layer was 1.57% with current density (J_(sc)) of 8.17 mA/cm~2, open circuit voltage (V_(oc)) of 0.52 V and fill factor (FF) of 36%.
机译:两种新的广泛吸收性交替共聚物,聚[1-(2,6-二异丙基苯基)-2,5-双(2-噻吩基)吡咯-alt-4,7-双(3-辛基-2-噻吩基)苯并噻二唑]( PTPTTBT-P1)和聚[1-(对-辛基苯基)-2,5-双(2-噻吩基)吡咯-alt-4,7-双(3-辛基-2-噻吩基)苯并噻二唑](PTPTTBT-P2)通过铃木缩聚以高收率制备。发现这两种聚合物在太阳光谱的可见光区域显示出特征吸收。有趣的是,发现PTPTTBT-P1的吸收覆盖了350至650 nm的可见光区域,膜中最大且平坦的吸收峰介于440至510 nm,而PTPTTBT-P2的吸收率覆盖了350至650 nm的可见光区域。 950 nm的薄膜在425和522 nm处的吸收最大值相对不同,而在832 nm处的吸收最大值却非常弱。聚合物的电化学带隙经计算分别为1.88eV和1.87eV,而聚合物的光学带隙经计算分别为1.94eV和1.87eV。使用以ITO / PEDOT:PSS /聚合物:PC_(70)BM(1:5 wt%)/ TiOx / Al构造制造的本体异质结(BHJ)太阳能电池研究了聚合物的光电性能。以PTPTTBT-P1:PC_(70)BM为有源层的太阳能电池的最大功率转换效率(PCE)为1.57%,电流密度(J_(sc))为8.17 mA / cm〜2,开路电压(V_(oc))为0.52 V,填充系数(FF)为36%。

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