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首页> 外文期刊>Macromolecular rapid communications: Publishing the newsletters of the European Polymer Federation >Synthesis and Characterization of a Soluble A-D-A Molecule Containing a 2D Conjugated Selenophene-Based Side Group for Organic Solar Cells
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Synthesis and Characterization of a Soluble A-D-A Molecule Containing a 2D Conjugated Selenophene-Based Side Group for Organic Solar Cells

机译:用于有机太阳能电池的2D共轭硒蛋白侧基的可溶性A-D-A分子的合成与表征

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摘要

A new acceptor-donor-acceptor (A-D-A) small molecule based on benzodithiophene (BDT) and diketopyrrolopyrrole (DPP) is synthesized via a Stille cross-coupling reaction. A highly conjugated selenophene-based side group is incorporated into each BDT unit to generate a 2D soluble small molecule (SeBDT-DPP). SeBDT-DPP thin films produce two distinct absorption peaks. The shorter wavelength absorption (400 nm) is attributed to the BDT units containing conjugated selenophene-based side groups, and the longer wavelength band is due to the intramolecular charge transfer between the BDT donor and the DPP acceptor. SeBDT-DPP thin films can harvest a broad solar spectrum covering the range 350-750 nm and have a low bandgap energy of 1.63 eV. Solution-processed field-effect transistors fabricated with this small molecule exhibit p-type organic thin film transistor characteristics, and the field-effect mobility of a SeBDT-DPP device is measured to be 2.3 x 10(-3) cm(2) V-1 s(-1). A small molecule solar cell device is prepared by using SeBDT-DPP as the active layer is found to exhibit a power conversion efficiency of 5.04% under AM 1.5 G (100 mW cm(-2)) conditions.
机译:通过STILLE交叉偶联反应合成基于苯二噻吩(BDT)和二酮吡咯啉(DIKETOPWROLOLOLOLE(DIKETOPWROLOLOLE(DIKETOPROLOLOLOLE(DPP)的新的受体 - 供体受体(A-D-A)小分子。将高缀合的硒蛋白基侧基团掺入每个BDT单元中以产生2D可溶性小分子(SEBDT-DPP)。 SEBDT-DPP薄膜产生两个不同的吸收峰。较短的波长吸收(400nm)归因于含有缀合的硒蛋白的侧基的BDT单元,并且较长的波长带是由于BDT供体和DPP受体之间的分子内电荷转移。 SEBDT-DPP薄膜可以收获覆盖350-750nm范围的广泛太阳能光谱,具有1.63eV的低带隙能量。用该小分子制造的溶液处理的场效应晶体管表现出p型有机薄膜晶体管特性,并且测量SEBDT-DPP器件的场效应迁移率为2.3×10(3)cm(2)V. -1 s(-1)。通过使用SEBDT-DPP制备小分子太阳能电池装置,因为发现活性层在am am1.5g(100mWcm(-2))条件下表现出5.04%的功率转化效率。

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