2017
DOI: 10.1021/acsami.6b15272
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Highly Efficient Full-Color Thermally Activated Delayed Fluorescent Organic Light-Emitting Diodes: Extremely Low Efficiency Roll-Off Utilizing a Host with Small Singlet–Triplet Splitting

Abstract: Numerous efforts have been devoted to boost the efficiency of thermally activated delayed fluorescence (TADF) devices; however, strategies to suppress the device efficiency roll-off are still in urgent need. Here, a general and effective approach to suppress the efficiency roll-off of TADF devices is proposed, that is, utilizing TADF materials as the hosts for TADF emitters. Bearing small singlet-triplet splitting (ΔE) with donor and acceptor units, TADF materials as the hosts possess the potential to achieve … Show more

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Cited by 113 publications
(66 citation statements)
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References 26 publications
(46 reference statements)
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“…The EQE max values of 18.0 % and 20.5 were achieved for IDAC‐MCO and IDAC‐Trz based OLEDs, respectively. In addition, similar TADF material with indolo[2,1‐b]acridine as donor can also be utilized as an universal host for TADF emitters, as reported by Duan et al., achieved high EQE max values of 23.2, 21.0 and 19.2 % for orange, green and sky‐blue TADF‐OLEDs, respectively, demonstrating the huge potential of TADF materials as hosts for efficient OLEDs.…”
Section: Design Strategies In Realizing Optimal Tadf Characteristicsmentioning
confidence: 76%
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“…The EQE max values of 18.0 % and 20.5 were achieved for IDAC‐MCO and IDAC‐Trz based OLEDs, respectively. In addition, similar TADF material with indolo[2,1‐b]acridine as donor can also be utilized as an universal host for TADF emitters, as reported by Duan et al., achieved high EQE max values of 23.2, 21.0 and 19.2 % for orange, green and sky‐blue TADF‐OLEDs, respectively, demonstrating the huge potential of TADF materials as hosts for efficient OLEDs.…”
Section: Design Strategies In Realizing Optimal Tadf Characteristicsmentioning
confidence: 76%
“…The adjacent hydrogen atom can provide both large steric hindrance and strongr estrictions along the CÀNa xis, as evidencedb yt he large rotational barriero f [2,3-b]acridine based TADF emitter: [53] 6- (13,acridin-11-yl)-3-methyl-1H-isochromen-1-one (IDAC-MCO) and 11- (4-(4,6-diphenyl-1,3,5-triazin-2-yl)phenyl)-13,13-dimethyl-5-phenyl-11,13-dihydro-5H-indolo [2,3-b]acridine (IDAC-Trz). The large planar donor units can providef urther HOMO localization and hence reduce the DE ST to only 0.02 eV for IDAC-Trz and 0.09 eV for IDAC-MCO, respectively.T he EQE max valueso f1 8.0 %a nd 20.5 were achieved for IDAC-MCO and IDAC-Trz based OLEDs, respectively.I na ddition, similar TADF materialw ith indolo [2,1-b]acridine as donor can also be utilized as an universal host for TADF emitters, as reported by Duan et al, [54] achieved highE QE max values of 23.2, 21.0 and 19.2 %f or orange, green and sky-blue TADF-OLEDs,r espectively,d emonstratingt he huge potential of TADF materials as hosts for efficient OLEDs.…”
Section: Expansion Of Homo Distributionmentioning
confidence: 87%
“…The electrochemical behaviors of these compounds were studied by using cyclic voltammetry (CV) measurements in anhydrous DMF solution for cathodic scans and in CH 2 Cl 2 solution for anodic scan . The cyclic voltammograms are shown in Figure .…”
Section: Resultsmentioning
confidence: 99%
“…Furthermore, Zhang et al designed a new TADF host namely 1,3-dihydro-1,1-dimethyl-3-(3-(4,6-diphenyl-1,3,5triazin-2-yl)phenyl)indeno-[2,1-b]carbazole (DMIC-TRZ). [80] Here, 1,3-dihydro-3,3-dimethylindeno [2,1-b]carbazole (DMIC) with high hole mobility and 1,3,5-triazine (TRZ) with high electron mobility serve as donor and acceptor units, repectively (Figure 13). [25,28] High T 1 energy level, balanced electron and hole mobilities, moderate FMO energy levels make DMIC-TRZ good hosts for full-color TADF emitters.…”
Section: Hosts Towards Tst Oledsmentioning
confidence: 99%