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Influence of Fluorine Substitution on the Optical Thermal Electrochemical and Structural Properties of Carbazole-Benzothiadiazole Dicarboxylic Imide Alternate Copolymers

机译:氟取代对咔唑 - 苯并噻唑二羧酸二羧酸二羧酸二羧酸二羧酸二羧酸二羧酸二羧酸二羧酸的光学热电化学和结构性能的影响

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摘要

In this work four novel donor-acceptor copolymers, PCDTBTDI-DMO, PCDTBTDI-8, P2F-CDTBTDI-DMO and P2F-CDTBTDI-8, were designed and synthesised via Suzuki polymerisation. The first two copolymers consist of 2,7-carbazole flanked by thienyl moieties as the electron donor unit and benzothiadiazole dicarboxylic imide (BTDI) as electron acceptor units. In the structures of P2F-CDTBTDI-DMO and P2F-CDTBTDI-8 copolymers, two fluorine atoms were incorporated at 3,6-positions of 2,7-carbazole to investigate the impact of fluorine upon the optoelectronic, structural and thermal properties of the resulting polymers. P2F-CDTBTDI-8 possesses the highest number average molecular weight (Mn = 24,200 g mol−1) among all the polymers synthesised. PCDTBTDI-DMO and PCDTBTDI-8 show identical optical band gaps of 1.76 eV. However, the optical band gaps of fluorinated copolymers are slightly higher than non-fluorinated counterparts. All polymers have deep-lying highest occupied molecular orbital (HOMO) levels. Changing the alkyl chain substituents on BTDI moieties from linear n-octyl to branched 3,7-dimethyloctyl groups as well as substituting the two hydrogen atoms at 3,6-positions of carbazole unit by fluorine atoms has negligible impact on the HOMO levels of the polymers. Similarly, the lowest unoccupied molecular orbital (LUMO) energy levels are almost comparable for all polymers. Thermogravimetric analysis (TGA) has shown that all polymers have good thermal stability and also confirmed that the fluorinated copolymers have higher thermal stability relative to those non-fluorinated analogues. Powder X-ray diffraction (XRD) studies proved that all polymers have an amorphous nature in the solid state.
机译:在这项工作中,设计并通过铃木聚合设计了四种新型供体 - 受体共聚物PCDTBTDI-DMO,PCDTBTDI-DMO,P2F-CDTBTDI-DMO和P2F-CDTBTDI-8。前两种共聚物由噻吩基部分侧翼的2,7-咔唑包括作为电子给体单元和苯并噻唑二羧酸酰亚胺(BTDI)作为电子受体单元。在P2F-CDTBTDI-DMO和P2F-CDTBTDI-8共聚物的结构中,在2,7-咔唑的3,6-位掺入两种氟原子,以研究氟对光电,结构和热性能的影响得到的聚合物。 P2F-CDTBTDI-8在合成的所有聚合物中具有最高数均分子量(Mn = 24,200g Mol-1)。 PCDTBTDI-DMO和PCDTBTDI-8显示了1.76eV的相同光带间隙。然而,氟化共聚物的光带间隙略高于非氟化对应物。所有聚合物都有深刻的最高占用分子轨道(HOMO)水平。将烷基链取代基从线性N-辛基转化为支链3,7-二甲基乙基,以及用氟原子在3,6-位的咔唑单元的3,6位取代的氢原子具有可忽略的影响聚合物。类似地,最低的未占用的分子轨道(LUMO)能水平对于所有聚合物几乎相当。热重分析(TGA)表明所有聚合物具有良好的热稳定性,并且还证实氟化共聚物相对于这些非氟化类似物具有更高的热稳定性。粉末X射线衍射(XRD)研究证明,所有聚合物都具有固态的无定形性质。

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