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首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Effects of inserting keto-functionalized side-chains instead of imide-functionalized side-chain on the pyrrole backbone of 2,5-bis(2-thienyl) pyrrole-based polymers for organic solar cells
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Effects of inserting keto-functionalized side-chains instead of imide-functionalized side-chain on the pyrrole backbone of 2,5-bis(2-thienyl) pyrrole-based polymers for organic solar cells

机译:将酮官能化侧链插入吡咯官能链上的吡咯骨侧链的吡咯骨架,用于有机太阳能电池的2,5-双(2-噻吩基)吡咯基聚合物的吡咯骨架

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摘要

A 2,5-bis(2-thienyl)pyrrole (TPT)-based new monomer unit incorporating the electron-withdrawing 1-decanone (ketone) at the 3- and 4-positions of the pyrrole unit of TPT was prepared. The resulting keto-functionalized TPT unit (approximate to TPTK) was polymerized with distannyl derivatives of 4,8-bis(5-(2-ediylhexyl)thiophen-2-yl)benzo[1,2b:4,5-b']dithiophene (BDTT), 4,7-bis(thiophen-2-yl)benzo[c][1,2,5]thiadiazole (DTBT), and 3,6-bis(thiophen-2yl)-2,5-dioctylpyrrolo[3,4-c]pyrrole-1,4(2H,5H)-dione (DKPP), to obtain three new polymers (P(BDTT-TPTK), P (DTBT-TPTK) and P(DKPP-TPTK)), respectively. The photophysical, electrochemical, and energy conversion efficiency of the TPTK-based polymers were thoroughly studied and compared with those of structurally similar polymers (P(BDTT-TPTI), P(DTBT-TPTI), and P(DKPP-TPTI)) incorporating an imide-functionalized TPT unit (approximate to TPTI). Overall, the TPTK-based polymers showed a higher band-gap (E-g approximate to 2.42 eV, 1.92 eV, and 1.42 eV), deeper highest occupied molecular orbital (HOMO approximate to -5.58 eV, -5.48 eV, and -5.31 eV, respectively) energy levels and lower carrier mobilities than those of the corresponding TPTI-based polymers. These combined effects led to relatively poor solar to electrical energy conversion efficiency for TPTK-based polymers compared to those of TPTI-based polymers.
机译:制备2,5-双(2-噻吩基)吡咯(TPT)基础的新单体单元,其在TPT的吡咯单元的3-和4位掺入滤光1-癸酮(酮)。将得到的酮官能化TPT单元(近似TPTK)与4,8-双(2- eDiylhexyl)噻吩-2-基)苯并[1,2B:4,5-B']的差分常常数衍生物聚合。二噻吩(BDTT),4,7-双(噻吩-2-基)苯并[C] [1,2,5]噻二唑(DTBT)和3,6-双(噻吩-200L)-2,5-二辛基吡咯[3,4-C]吡咯-1,4(2H,5H) - 二酮(DKPP),得到三种新聚合物(P(BDTT-TPTK),P(DTBT-TPTK)和P(DKPP-TPTK)) , 分别。与结构相似的聚合物(P(BDTT-TPTI),P(DTBT-TPTI)和P(DKPP-TPTI))进行彻底研究并进行了彻底研究了基于TPTK的聚合物的光学性,电化学和能量转换效率IMIDE功能化TPT单元(近似TPTI)。总的来说,基于TPTK的聚合物显示出更高的带间隙(例如,近似为2.42eV,1.92eV和1.42eV),最高占用的分子轨道(Homo近似为-5.58eV,-5.48eV和-5.31eV,分别比相应的基于TPTI的聚合物的能量水平和较低的载流子阶段。与TPTI基聚合物相比,这些组合效应导致了基于TPTK的聚合物的电能转换效率相对较差。

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