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Synthesis and optical properties of photovoltaic materials based on the indenofluorines and ambipolar dithienonaphthothiadiazol

机译:基于茚烷烃和吲哚胺二硫代噻唑噻唑的光伏材料的合成与光学性质

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Dithieno[3'2':5,6;2",3":7,8]naphtho[2,3-c][1,2,5] thiadiazole (DTNT) and Indeno[2,1-c]fluorine (IF) derivatives were designed to control the band energies of the photovoltaic materials. Electrochemical analysis showed that DTNT acts as both an electron donor and an electron acceptor, revealing the ambipolar nature of the DTNT unit. The direct arylation polymerization of DTNT with 2,2'-bithiophene (BTh) and 3,6-bis(2-thienyl)pyrrolo[3,4-c]pyrrole-1,4-dione (DPP) afforded four polymers, and the PDTNT-DPP exhibited narrow band gap energy of 1.4 eV and a low HOMO energy of -5.43 eV. The IF derivatives with low HOMO and LUMO energies were designed and synthesized as an electron accepter for the PDTNT-DPP.
机译:Dithieno [3'2':5,6; 2“,3”:7,8]萘[2,3-C] [1,2,5]噻二唑(DTNT)和Indeno [2,1-C]氟(if)衍生物被设计为控制光伏材料的频带能量。电化学分析表明,DTNT充当电子给体和电子受体,揭示了DTNT单元的amiPolar性质。 DTNT与2,2'-二硫代乙烷(BTH)和3,6-双(2-噻吩基)吡咯[3,4-C]吡咯-1,4-二酮(DPP)的直接芳基化聚合提供四种聚合物, PDTNT-DPP表现出1.4 eV的窄带隙能量,低于-5.43eV的低同质能量。 IFOM和LUMO Energies的衍生物被设计和合成为PDTNT-DPP的电子Accepter。

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