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首页> 外文期刊>Chemistry, an Asian journal >Effect of a Pendant Acceptor on Thermally Activated Delayed Fluorescence Properties of Conjugated Polymers with Backbone-Donor/Pendant-Acceptor Architecture
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Effect of a Pendant Acceptor on Thermally Activated Delayed Fluorescence Properties of Conjugated Polymers with Backbone-Donor/Pendant-Acceptor Architecture

机译:垂侧受体对骨干/吊坠 - 受体架构缀合聚合物热活化延迟荧光特性的影响

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摘要

Three sets of conjugated polymers with backbone-donor/pendant-acceptor architectures, named PCzA3PyB, PCzAB2Py, and PCzAB3Py, are designed and synthesized. The three isomeric benzoylpyridine-based pendant acceptor groups are 6-benzoylpyridin-3-yl (3PyB), 4-((pyridin-2-yl)carbonyl)phenyl (B2Py) and 4-((pyridin-3-yl)carbonyl)phenyl (B3Py), whereas the identical backbone consists of 3,6-carbazolyl and 2,7-acridinyl rings. One acridine ring and each acceptor group constitute a definite thermally activated delayed fluorescence (TADF) unit, incorporated into the main chain of the polymers through the 2,7-position of the acridine ring with the varied content. All of the polymers display legible TADF features with a short microsecond-scale delayed lifetime (0.56-1.62 mu s) and a small singlet/triplet energy gap (0.10-0.19 eV). Progressively redshifted emissions are observed in the order PCzAB3Py, PCzA3PyB, and PCzAB2Py owing to the different substitution patterns of the pyridyl group. Photoluminescence quantum yields can be improved by regulating the molar content of the TADF unit in the range 0.5-50 %. The non-doped organic light-emitting devices (OLEDs) fabricated by solution-processing technology emit yellow-green to orange light. The polymers with 5 mol % of the TADF unit exhibit excellent comprehensive electroluminescence performance, in which PCzAB2Py5 achieves a maximum external quantum efficiency (EQE) of 11.9 %, low turn-on voltage of 3.0 V, yellow emission with a wavelength of 573 nm and slow roll-off with EQE of 11.6 % at a luminance of 1000 cd m(-2) and driving voltage of 5.5 V.
机译:设计和合成了三套具有骨干供应器/吊坠 - 受体架构,名为PCZA3PYB,PCZAB2PY和PCZAB3PY的架构架构。基于三种异构苯甲酰基吡啶末端受体基团是6-苯甲酰吡啶-3-基(3pyB),4 - ((吡啶-2-基)羰基)苯基(B2Py)和4 - ((吡啶-3-基)羰基)苯基(B3PY),而相同的骨架由3,6-咔唑基和2,7-吖啶基环组成。一种吖啶环和每个受体组构成一定的热活化延迟荧光(TADF)单元,通过吖啶环的2,7-位与多种含量的2,7-位掺入聚合物的主链中。所有聚合物都显示出易读的TADF特征,短尺度延迟寿命短(0.56-1.62亩)和小单线/三重态能隙(0.10-0.19eV)。由于吡啶基的不同替代模式,在PCzab3py,PCza3pyb和PCZab2py中观察到逐步的红移排放。通过调节TADF单元的摩尔含量,可以改善光致发光量子产率在0.5-50%的范围内。通过溶液加工技术制造的非掺杂有机发光器件(OLED)向橙光发出黄绿色。具有5摩尔%的TADF单元的聚合物表现出优异的综合电致发光性能,其中PCZab2Py5实现了11.9%的最大外部量子效率(EQE),低导通电压为3.0 V,黄色发射,波长为573nm,在1000cd m(-2)的亮度下,通过11.6%的EQE缓慢滚动,驱动电压为5.5V。

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