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Selenophene-bearing low-band-gap conjugated polymers: tuning optoelectronic properties via fluorene and carbazole as donor moieties

机译:含硒的低带间隙共轭聚合物:通过芴和咔唑作为供体部分调整光电性能

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In this study, two donor-acceptor (D-A)-type conjugated polymers, namely PQSeCz and PQSeFl, were designed and synthesized. Selenophene was incorporated as the pi-bridge and quinoxaline as an acceptor unit, while carbazole and fluorene were used as the donor units. Polymers were synthesized via palladium-catalyzed Suzuki polymerization reaction. All molecules were characterized by H-1 and C-13 NMR spectroscopy. The weight and number average molecular weights of the two polymers were determined by gel permeation chromatography. Electrochemical and spectroelectrochemical characterizations of the polymers were performed to investigate their optoelectronic properties. Oxidation potentials were 1.15 V/0.82 V and 1.11 V/0.82 V for PQSeCz and PQSeFl, respectively, while reduction potentials were - 1.26 V/- 1.14 V and - 1.48 V/- 1.20 V, respectively. In the visible region, maximum absorption wavelengths for the two polymers were 551 nm and 560 nm, respectively. Optical band gaps (Egop) were found from the lowest energy pi-pi* transition onsets as 1.67 eV for PQSeCz and 1.51 eV for PQSeFl, respectively. Both polymers showed good solubility in common solvents.
机译:在该研究中,设计并合成了两种供体 - 受体(D-A)型缀合的聚合物,即PQSECZ和PQSeFL。将硒素掺入作为pi桥和喹喔啉作为受体单元,而咔唑和芴用作供体单元。通过钯催化的铃木聚合反应合成聚合物。所有分子的特征在于H-1和C-13 NMR光谱。通过凝胶渗透色谱法测定两种聚合物的重量和数均分子量。进行聚合物的电化学和光谱电化学表征,以研究它们的光电性能。对于PQSECZ和PQSeFL,氧化电位分别为1.15V / 0.82V和1.11V / 0.82V,而降低电位分别为-1.26V / - 1.14 V和-1.48V / -1.20V。在可见区域中,两种聚合物的最大吸收波长分别为551nm和560nm。从最低能量PI-PI *过渡持续到PQSECZ和1.51 EV的最低能量PI-PI *转换持续仪中发现光带间隙(EGOP)分别为PQSECZ和1.51 eV。两种聚合物在普通溶剂中显示出良好的溶解度。

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