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首页> 外文期刊>RSC Advances >Efficient fluorescent OLEDS based on assistant acceptor modulated HLCT emissive state for enhancing singlet exciton utilization
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Efficient fluorescent OLEDS based on assistant acceptor modulated HLCT emissive state for enhancing singlet exciton utilization

机译:基于辅助受体的高效荧光OLED调制HLCT发光状态,用于增强单线态激子利用

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Phenylamine phenanthroimidazole based bipolar compounds with donor–acceptor (D–A) architecture namely, 4-(1-(2,3-dihydrobenzo[ b ][1,4]dioxin-5-yl)-6,9-di(pyren-4-yl)-1 H -phenanthro[9,10- d ]imidazol-2-yl)- N , N -diphenylaniline (DDPPPA) and 4′-(1-(2,3-dihydrobenzo[ b ][1,4]dioxin-5-yl)-6,9-di(pyren-4-yl)-1 H -phenanthro[9,10- d ]imidazol-2-yl)- N , N -diphenyl-[1,1′-biphenyl]-4-amine (DDPBA) have been synthesized with highly fluorescent pyrene moieties at C6- and C9-positions. The C6 and C9 modification enhanced the thermal, photochemical and electroluminescent properties. Both molecules were employed as blue emitters in non doped organic light emitting devices (OLEDs) and show high performances due to hybridized local and charge-transfer properties. An OLED with DDPPPA/DDPBA emissive layer shows deep-blue emission with maximum external quantum efficiency ( η _(ex) ), current efficiency ( η _(c) ) and power efficiency ( η _(p) ) of 5.7/6.0%, 10.5/12.0 cd A ~(?1) and 8.3/9.2 lm W ~(?1) , respectively. Both devices show high singlet exciton utilizing efficiency ( η _(s) ) of DDPPPA-31.33% and DDPBA-35.29%. The doped device m -MTDATA:DDPPPA/ m -MTDATA:DDPBA shows maximum efficiencies of η _(c) ?7.4/8.23 cd A ~(?1) ; η _(p) ?5.8/6.13 lm W ~(?1) ; η _(ex) ?4.72/5.63% (5 wt%): η _(c) ?8.36/9.15 cd A ~(?1) ; η _(p) ?6.32/6.65 lm W ~(?1) ; η _(ex) ?4.86/5.45% (10 wt%): η _(c) ?9.58/10.02 cd A ~(?1) ; η _(p) ?7.8/8.25 lm W ~(?1) ; η _(ex) ?5.96/6.25% (20 wt%). The doped device based on TAPC host TAPC:DDPPPA/TAPC:DDPBA exhibits maximum efficiencies of η _(c) ?9.60/10.03 cd A ~(?1) ; η _(p) ?7.81/8.26 lm W ~(?1) ; η _(ex) ?5.96/6.25% (20 wt%).
机译:苯胺菲咪唑基与供体 - 受体(D-A)架构的双极化合物,即4-(1-(2,3-二氢苯并[B] [1,4] Dioxin-5-Y1)-6,9-DI(Pyren -4-yl)-1 h-phenanthro [9,10-d]咪唑-2-基) - n,n-二苯基苯胺(ddpppa)和4' - (1-(2,3-二氢苯并[b] [1 ,4]二恶英-5-基)-6,9-DI(Pyren-4-Y1)-1h -phenanthro [9,10-d]咪唑-2-基) - N,N-二苯基 - [1, 1'-联苯] -4-胺(DDPBA)已在C6和C9位置以高荧光芘部分合成。 C6和C9改性增强了热,光化学和电致发光性能。在非掺杂有机发光器件(OLED)中使用两个分子作为蓝色发射器,并且由于杂交的局部和电荷转移性能而显示出高性能。具有DDPPA / DDPBA发光层的OLED显示了具有最大外部量子效率的深蓝色发射(η_(ex)),电流效率(η_(c))和功率效率(η_(p))为5.7 / 6.0% ,分别为10.5 / 12.0 CD A〜(?1)和8.3 / 9.2 LM W〜(?1)。两种器件都显示出高态激素利用DDPPPA-31.33%和DDPBA-35.29%的效率(η_(s))。掺杂器件M-MTDATA:DDPPPA / M-MTDATA:DDPBA显示η_(c)的最大效率?7.4 / 8.23 CD A〜(?1); η_(p)?5.8 / 6.13 lm w〜(?1); η_(ex)?4.72 / 5.63%(5wt%):η_(c)?8.36 / 9.15 CD A〜(?1); η_(p)?6.32 / 6.65 lm w〜(?1); η_(ex)?4.86 / 5.45%(10wt%):η_(c)?9.58 / 10.02 CD a〜(?1); η_(p)?7.8 / 8.25 lm w〜(?1); η_(ex)?5.96 / 6.25%(20wt%)。基于TAPC主机TAPC的掺杂器件:DDPPPA / TAPC:DDPBA表现出η_(c)的最大效率?9.60 / 10.03cd a〜(?1); η_(p)?7.81 / 8.26 lm w〜(?1); η_(ex)?5.96 / 6.25%(20wt%)。

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