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Selenophene and fluorene based narrow band gap copolymers with E_g = 1.41 eV for near infrared polymer light emitting diodes

机译:E_g = 1.41 eV的硒基和芴基窄带隙共聚物,用于近红外聚合物发光二极管

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摘要

A series of random low band-gap conjugated copolymers (PFO-DDSTQ) derived from 9,9-dioctylfluorene (DOF) and 6,7-dimethyl-4,9-di(selenophen-2-yl)-[1,2,5]thiadiazolo[3,4-g]quinoxaline (DDSTQ.) are pre pared by the palladium-catalyzed Suzuki coupling reaction. The obtained polymers are readily soluble in common organic solvents. The polymers absorb light from 300 to 880 nm with two absorbance peaks at around 370 and 740 nm. The optical band gaps of the resulting polymers with 15 or 30% narrow band-gap units in the polymer backbone calculated from the absorption onset are around 1.41 eV. The electrolumi nescent properties of the polymers were investigated and it was found that with 5% DDSTQcopolymerized on the main chain, the resulting polymer PFO-DDSTQ5 exhibited an exclusively near-infrared emission at 860nm.
机译:衍生自9,9-二辛基芴(DOF)和6,7-二甲基-4,9-二(硒代苯-2-基)-[1,2,-]的一系列无规低带隙共轭共聚物(PFO-DDSTQ) 5]噻二唑并[3,4-g]喹喔啉(DDSTQ。)由钯催化的Suzuki偶联反应制备。所获得的聚合物容易溶于常见的有机溶剂。聚合物吸收300至880 nm的光,并在370和740 nm处出现两个吸收峰。由吸收开始算出的所得聚合物在聚合物主链中具有15%或30%的窄带隙单元的光学带隙为约1.41eV。研究了聚合物的电致发光性能,发现在主链上共聚合了5%的DDSTQ时,所得的聚合物PFO-DDSTQ5在860nm处仅表现出近红外发射。

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