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Synthesis and photovoltaic properties of a new donor-acceptor conjugated polymer based on fluorinated benzothiadiazole units

机译:基于氟化苯并噻二唑单元的新型供体-受体共轭聚合物的合成及光电性能

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A novel fluorinated copolymer (PDTSffBT) based on dithienosilole donor unit and fluorinated benzothiadiazole acceptor unit has been synthesized for polymer solar cells. This copolymer exhibits a deeper HOMO energy level compared to that of hydrogenated benzothiadiazole-based copolymer (PDTSBT), resulting in high open-circuit voltages well exceeding 0.75 V. The introduction of the two electron-withdrawing fluorine atoms on the benzothiadiazole unit also leads to an increase in the molar extinction coefficient as well as the interchain interaction in the PDTSffBT copolymer with respect to its analogue PDTSBT copolymer. Power conversion efficiency (PCE) of the device using PDTSffBT:PCBM as active layer (2.93 %) is much higher than of a PDTSBT:PCBM (1.64 %) counterpart under identical conditions.
机译:合成了一种基于二噻吩甲酚分子供体单元和氟化苯并噻二唑受体单元的新型氟化共聚物(PDTSffBT),用于聚合物太阳能电池。与氢化苯并噻二唑基共聚物(PDTSBT)相比,该共聚物的HOMO能级更深,导致开路电压远超过0.75V。在苯并噻二唑单元上引入两个吸电子氟原子还导致相对于其类似物PDTSBT共聚物,PDTSffBT共聚物的摩尔消光系数以及链间相互作用的增加。在相同条件下,使用PDTSffBT:PCBM作为有源层的设备的功率转换效率(PCE)(2.93%)比PDTSBT:PCBM的功率转换效率(1.64%)高得多。

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