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Synthesis of fluorene-based polyelectrolytes tethering different counterions for single-component white light-emitting electrochemical cells

机译:用于单组分白光电化学电池的芴基聚电解质的合成不同抗衡膜

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A series of polyfluorene (PF) electrolytes bearing Br~-, BF_4~-, or PF_6~- counterions were synthesized and characterized. 2,1,3-benzoselenadiazole moieties were incorporated into polymer main chains to produce single-component white lightemitting polymers. The thermal stability of Br-containing ionic PF was decreased because of the Hofmann elimination occurred at higher temperature. By replacing Br~- with BF_4~- or PF_6~- counterions, the thermal stability of polymers was significantly improved. The emission intensity around 550 nm was decreased for ionic polyelectrolytes. The optimized spin-coated light-emitting electrochemical cell (LEC) with the configuration of ITO/PEDOT/polymer/Ag showed a maximum luminescence efficiency of 1.56 lm/W at a low operation bias of 3 V. The single-component LEC device exhibited pure white light emission with CIE'1931 coordinates approaching (0.33, 0.33) and high color rendering index (CRI < 85), referring to its potential use in solid-state-lighting application.
机译:合成并表征了一系列轴承Br〜 - ,BF_4〜 - 或PF_6〜抗衡离子的多氟烯(PF)电解质。将2,1,3-苯并烯二唑部分掺入聚合物主链中,以生产单组分白色发光聚合物。由于在较高温度下发生了Hofmann消除,因此降低了含Br的离子PF的热稳定性。通过更换BR〜 - 用BF_4〜 - 或PF_6〜抗衡离子,聚合物的热稳定性显着提高。对于离子聚电解质,减少了550nm左右约550nm的发射强度。优化的旋涂发光电化学电池(LEC)具有ITO / PEDOT /聚合物/ AG的配置,在3 V的低操作偏压下显示出1.56 LM / W的最大发光效率。表现出单组分LEC器件纯白色光发光与CIE'1931坐标接近(0.33,0.33)和高色渲染指数(CRI <85),参考其在固态照明应用中的潜在用途。

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