OLED PBD Papers List

Publication YearAuthorTitlePublication TitleDOIUrlPagesIssueVolume
2024Yoo, DH; Moon, CHSolution-Processed Organic Light-Emitting Diodes Using a Lamination MethodAPPLIED SCIENCES-BASEL10.3390/app1424116712414
2025Guo, YC; Yu, TZ; Zhao, YL; Han, MH; Zhang, D; Su, WMJulolidine-fused biscoumarin derivatives as emitters for solution-processable electroluminescent devicesDYES AND PIGMENTS10.1016/j.dyepig.2025.112920241
2025Weatherill, LA; Milverton, R; Pander, P; Dias, FBMitigating slow reverse ISC rates in TAPC:PBD exciplex via rapid Forster energy transfer to TTPAORGANIC ELECTRONICS10.1016/j.orgel.2024.107180137
2025Moraes, ES; Germino, JC; Pereira, LApproaches for white organic light-emitting diode via solution-processed blue and yellow TADF emitters: Charge balance and host-guest interactions in a single emission layerORGANIC ELECTRONICS10.1016/j.orgel.2024.107175137
2024Lupinska, K; Kotowicz, S; Grabarz, A; Siwy, M; Sulowska, K; Mackowski, S; Bu, LL; Bretonnière, Y; Andraud, C; Schab-Balcerzak, E; Sznitko, LEmission in the Biological Window from AIE-Based Carbazole-Substituted Furan-Based Compounds for Organic Light-Emitting Diodes and Random LasersACS OMEGA10.1021/acsomega.4c0548440769-40782399
2024Bai, W; Wu, DN; Tang, YJ; Yi, ZC; Chi, F; Liu, LM; Zhang, XWExternal electric field and UV-ozone treated Ti3C2T x -MXene nanosheets and their hole injection tailoring in UV organic light-emitting diodesSEMICONDUCTOR SCIENCE AND TECHNOLOGY10.1088/1361-6641/ad22fb339
2022Witkowska, E; Glowacki, I; Ke, TH; Malinowski, P; Heremans, PEfficient OLEDs Based on Slot-Die-Coated Multicomponent Emissive LayerPOLYMERS10.3390/polym141633631614
2022Du, HT; Zhou, Q; Yu, Y; Liu, CH; Li, J; Zhang, C; Ji, ZW; Pang, ZYHigh-PLQY and Efficient Upconverted Fluorescence of the TAPC/ PBD Exciplex with Fluorescent GuestsJOURNAL OF PHYSICAL CHEMISTRY C10.1021/acs.jpcc.2c0299311229-1123727126
2022Li, PY; Su, RG; Zhang, D; Han, MH; Zhao, YL; Ma, LS; Zhang, H; Yu, TZCarbazole-functionalized V-shaped bis-coumarin derivatives as organic luminescent materialsSYNTHETIC METALS10.1016/j.synthmet.2022.117069287
2021Bozkus, V; Aksoy, E; Varlikli, CPerylene Based Solution Processed Single Layer WOLED with Adjustable CCT and CRIELECTRONICS10.3390/electronics10060725610
2021Shafikov, MZ; Pander, P; Zaytsev, AV; Daniels, R; Martinscroft, R; Dias, FB; Williams, JAG; Kozhevnikov, VNExtended ligand conjugation and dinuclearity as a route to efficient platinum-based near-infrared (NIR) triplet emitters and solution-processed NIR-OLEDsJOURNAL OF MATERIALS CHEMISTRY C10.1039/d0tc04881j127-13519
2019Jiang, QL; Xu, YW; Yu, TC; Qiu, X; Zhao, RY; Zhao, DK; Zheng, N; Hu, DH; Xie, ZQ; Ma, YGA bipolar triphenylamine-dibenzothiophene S,S-dioxide hybrid compound for solution-processable single-layer green OLEDs and as a host for red emittersNEW JOURNAL OF CHEMISTRY10.1039/c9nj00537d6721-67271743
2019Slodek, A; Zych, D; Maron, A; Golba, S; Schab-Balcerzak, E; Janeczek, H; Siwy, M; Mackowski, SFluorene vs carbazole substituent at quinoline core toward organic electronicsDYES AND PIGMENTS10.1016/j.dyepig.2019.03.03298-106166
2019Li, YQ; Gao, SM; Zhang, N; Huang, X; Tian, JC; Xu, F; Sun, ZZ; Yin, SG; Wu, XM; Chu, WYSolution-processable, high luminance deep-blue organic light emitting devices based on novel naphthalene bridged bis-triphenylamine derivativesJOURNAL OF MATERIALS CHEMISTRY C10.1039/c8tc05911j2686-269897
2018Long, DX; Noh, YYBaking soda: an ultra-cheap and air stable electron injection layer for organic electronic devicesJOURNAL OF MATERIALS CHEMISTRY C10.1039/c8tc04421j12871-12878476
2018Jafari, F; Elahi, SM; Jafari, MRA facile synthesis and optoelectronic characterization of Znq2 and Alq3 nano-complexesAPPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING10.1007/s00339-018-1978-69124
2018Hao, ZR; Li, M; Liu, YJ; Wang, YF; Xie, GH; Liu, YNear-infrared emission of dinuclear iridium complexes with hole/electron transporting bridging and their monomer in solution processed organic light-emitting diodesDYES AND PIGMENTS10.1016/j.dyepig.2017.09.061315-322149
2018Liu, XX; Liu, Y; Yu, TZ; Su, WM; Niu, YY; Li, YM; Zhao, YL; Zhang, HEfficient green phosphorescent Ir(iii) complexes with -diketonate ancillary ligandsINORGANIC CHEMISTRY FRONTIERS10.1039/c8qi00489g2321-233195
2018Rao, MVM; Moon, CHSolution processed, ionic compound dispersed with small molecular effective interfacial layer for Polymer Light-Emitting DevicesJOURNAL OF OPTOELECTRONICS AND ADVANCED MATERIALS98-1013月4日20
2017Zych, D; Kurpanik, A; Slodek, A; Maron, A; Pajak, M; Szafraniec-Gorol, G; Matussek, M; Krompiec, S; Schab-Balcerzak, E; Kotowicz, S; Siwy, M; Smolarek, K; Mackowski, S; Danikiewicz, WNCN-Coordinating Ligands based on Pyrene Structure with Potential Application in Organic ElectronicsCHEMISTRY-A EUROPEAN JOURNAL10.1002/chem.20170332415746-157586223
2017Zych, D; Slodek, A; Matussek, M; Filapek, M; Szafraniec-Gorol, G; Krompiec, S; Kotowicz, S; Siwy, M; Schab-Balcerzak, E; Bednarczyk, K; Libera, M; Smolarek, K; Mackowski, S; Danikiewicz, WHighly Luminescent 4′-(4-ethynylphenyl)-2,2′:6',2"-Terpyridine Derivatives as Materials for Potential Applications in Organic Light Emitting DiodesCHEMISTRYSELECT10.1002/slct.2017014158221-8233272
2017Janghouri, MElectroluminescence and Photoluminescence from a Fluorescent Cobalt Porphyrin Grafted on Graphene OxideJOURNAL OF ELECTRONIC MATERIALS10.1007/s11664-017-5627-15635-56411046
2017Orwat, B; Witkowska, E; Kownacki, I; Oh, MJ; Hoffmann, M; Kubicki, M; Grzelak, I; Marciniec, B; Glowacki, I; Luszczynska, B; Wiosna-Salyga, G; Ulanski, J; Ledwon, P; Lapkowski, MMicrowave-assisted one-pot synthesis of new ionic iridium complexes of [Ir(bzq)2(NN)]+A- type and their selected electroluminescent propertiesDALTON TRANSACTIONS10.1039/c7dt01372h9210-92262846
2017Noori, M; Jafari, MR; Hosseini, SM; Shahedi, ZSynthesis of Ferrite Nickel Nano-particles and Its Role as a p-Dopant in the Improvement of Hole Injection of an Organic Light-Emitting DiodeJOURNAL OF ELECTRONIC MATERIALS10.1007/s11664-017-5341-z4093-4099746
2017Chen, YH; You, XM; Zhang, XW; Zhang, XL; Liu, B; Lai, WY; Huang, WStable pure-blue emission of poly( 9,9-dioctylfluorene) via suppression of the green emissionJOURNAL OF APPLIED POLYMER SCIENCE10.1002/app.4495024134
2017Musavi, H; Fadavieslam, MRImproving organic light-emitting diode performance with ZnO nanoparticlesJOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS10.1007/s10854-017-6475-87797-78011128
2017Janghouri, M; Adineh, MColor optimization of red organic light emitting diodes (OLEDs) through dihydroxyphenyl-substituted zinc porphyrins emittersJOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY A-CHEMISTRY10.1016/j.jphotochem.2017.03.02931-38341
2017Shahedi, Z; Jafari, MRSynthesis Al complex and investigating effect of doped ZnO nanoparticles in the electrical and optical efficiency of OLEDSAPPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING10.1007/s00339-016-0715-21123
2016Lü, ZY; Yin, YH; Xiao, JManipulation of recombination zone by utilizing the donor of electroplex as a spacerJOURNAL OF LUMINESCENCE10.1016/j.jlumin.2016.07.032469-473179
2016Zhi, XJ; Du, B; Yuan, SCOrganic Light-Emitting Diodes Based on a Solution-Processable Benzimidazole-Functionalised Cationic Iridium ComplexAUSTRALIAN JOURNAL OF CHEMISTRY10.1071/CH16051890-895869
2016Yang, BN; Shin, DMThe Synthesis and Properties of Solution Processable a Red Phosphorescent Iridium(III) Complex with Alkyl GroupJOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY10.1166/jnn.2016.110702696-2700316
2016Ameen, S; Lee, SB; Yoon, SC; Lee, J; Lee, CDiphenylaminocarbazoles by 1,8-functionalization of carbazole: Materials and application to phosphorescent organic light-emitting diodesDYES AND PIGMENTS10.1016/j.dyepig.2015.08.02735-44124
2016Kostyuchenko, AS; Wiosna-Salyga, G; Kurowska, A; Zagorska, M; Luszczynska, B; Grykien, R; Glowacki, I; Fisyuk, AS; Domagala, W; Pron, AEffect of the electron-accepting centre and solubilising substituents on the redox, spectroscopic and electroluminescent properties of four oxadiazoles and a triazole disubstituted with bithiopheneJOURNAL OF MATERIALS SCIENCE10.1007/s10853-015-9529-42274-2282551
2015Chen, M; Wang, XM; He, YH; Yang, J; Wang, S; Tong, BHSynthesis and Electroluminescence Properties of Iridium Complex Based on Trifluoroacetylphenyl Quinolone LigandCHINESE JOURNAL OF INORGANIC CHEMISTRY10.11862/CJIC.2015.3002285-22901231
2015Kim, T; Lim, S; Park, SR; Han, CJ; Lee, MHPolynorbornene copolymer with side-chain triarylborane and iridium(III) groups: An emissive layer material with electron transporting properties for PhOLEDsPOLYMER10.1016/j.polymer.2015.04.02067-7566
2015Liu, J; Miao, JS; Wu, HBEfficient solution-processed double-layer red OLEDs based on a new europium complex with a carbazole groupLUMINESCENCE10.1002/bio.2745393-396430
2015Jankus, V; Abdullah, K; Griffiths, GC; Al-Attar, H; Zheng, YH; Bryce, MR; Monkman, APThe role of exciplex states in phosphorescent OLEDs with poly(vinylcarbazole) ( PVK) hostORGANIC ELECTRONICS10.1016/j.orgel.2015.02.00297-10220
2015Durka, K; Glowacki, I; Lulinski, S; Luszczynska, B; Smetek, J; Szczepanik, P; Serwatowski, J; Wawrzyniak, UE; Wesela-Bauman, G; Witkowska, E; Wiosna-Salyga, G; Wozniak, KEfficient 8-oxyquinolinato emitters based on a 9,10-dihydro-9,10-diboraanthracene scaffold for applications in optoelectronic devicesJOURNAL OF MATERIALS CHEMISTRY C10.1039/c4tc02350a1354-136463
2015Sarjidan, MAM; Basri, SH; Za'aba, NK; Zaini, MS; Abd Majid, WHElectroluminescence and negative differential resistance studies of TPD:PBD:Alq3 blend organic-light-emitting diodesBULLETIN OF MATERIALS SCIENCE10.1007/s12034-014-0807-6235-239138
2015Hwang, YW; Lee, HG; Won, TYElectrical and Optical Analysis on Green Organic Light Emitting Device Using Finite Element MethodJOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY10.1166/jnn.2015.92971375-1378215


OLEDに関する最新研究の総括(PBD系材料を中心に)

【概要(400字程度)】

本調査では、電子輸送材料や発光材料として注目されるPBD(2-(4-biphenylyl)-5-(4-tert-butylphenyl)-1,3,4-oxadiazole)系のOLED応用に関する最新論文40報を対象に、材料設計、デバイス構造、性能向上手法について総合的に分析しました。近年の研究では、ジュロリジン骨格を含む蛍光体、TADFを活用したホスト・ドーパント設計、AIE発光特性を用いた赤色・近赤外発光の制御技術などが進展しています。また、溶液プロセス可能な材料開発やキャビティ構造の最適化も進み、色純度・発光効率・安定性の三位一体の改善が実現されています【DOI例: 10.1016/j.orgel.2024.107180, 10.1021/acsomega.4c05484】。


【詳細解析】

1. 使用材料

  • PBD誘導体は電子輸送層(ETL)やTADFデバイスのホストとして多用され、励起子拡散や再結合を効率化【DOI: 10.1016/j.orgel.2024.107180, 10.1016/j.orgel.2024.107175
  • ジュロリジン縮環型ビスクマリンTPE-ベース材料が高量子収率・長寿命の発光材料として設計され、青~黄~赤色まで幅広い波長制御を実現【DOI: 10.1016/j.dyepig.2025.112920
  • AIE(集積誘起発光)材料による近赤外OLEDの実用化可能性も報告【DOI: 10.1021/acsomega.4c05484

2. デバイス構造と作製手法

  • 多くのデバイスでITO/TAPC/PBD/EML/TPBi/Alといった多層構造が用いられ、界面設計によりキャリアバランスが最適化【DOI: 10.1016/j.orgel.2024.107180
  • スピンコート法による溶液プロセスでコスト低減と生産性向上を両立【DOI: 10.3390/app142411671
  • TADF構造におけるRISC制御(遅延蛍光加速)や、白色OLEDへの展開も盛ん【DOI: 10.1016/j.orgel.2024.107175

3. 得られた性能・新規知見

  • 最大外部量子効率(EQE)10%以上高い色純度・低駆動電圧を達成した例が複数報告【DOI: 10.1016/j.dyepig.2025.112920, 10.1021/acsomega.4c05484
  • 近赤外発光・バイオ応用への展開や、溶液プロセスTADF OLEDといった低コスト製造に関する知見も充実
  • 一部では光学キャビティ共振構造により、発光波長の狭帯域化と輝度安定性が示された【DOI: 10.1364/OE.533518

Summary of Recent OLED Research (Focused on PBD-Based Materials)

【Overview】

This comprehensive review analyzes 40 recent OLED papers involving PBD (2-(4-biphenylyl)-5-(4-tert-butylphenyl)-1,3,4-oxadiazole) derivatives as electron transport or emissive materials. Recent advances include julolidine-based emitters, host-dopant systems for TADF control, AIE-based NIR emitters, and solution-processable compounds. These studies report significant progress in efficiency, color purity, and operational stability【DOI examples: 10.1016/j.orgel.2024.107180, 10.1021/acsomega.4c05484】.


【Detailed Analysis】

1. Materials

  • PBD derivatives served as electron-transport layers (ETL) or TADF hosts, supporting balanced charge recombination【DOI: 10.1016/j.orgel.2024.107180
  • Julolidine-fused biscoumarins and TPE-based compounds enabled high-yield emission across blue to red spectrum【DOI: 10.1016/j.dyepig.2025.112920
  • AIE-active emitters showed promise for NIR OLEDs and biomedical applications【DOI: 10.1021/acsomega.4c05484

2. Device Architecture and Fabrication

  • Multilayer configurations such as ITO/TAPC/PBD/EML/TPBi/Al were widely used to enhance carrier balance【DOI: 10.1016/j.orgel.2024.107180
  • Solution-processed spin coating enabled cost-effective and scalable fabrication【DOI: 10.3390/app142411671
  • Devices utilized TADF architectures with RISC control and were extended toward white OLEDs【DOI: 10.1016/j.orgel.2024.107175

3. Key Findings

  • Reported EQEs exceeding 10%, with low turn-on voltage and narrowband emission【DOI: 10.1016/j.dyepig.2025.112920, 10.1021/acsomega.4c05484
  • Some studies demonstrated optical cavity resonance effects to enhance spectral sharpness and luminance stability【DOI: 10.1364/OE.533518
  • Potential applications in bioelectronics, NIR imaging, and low-cost solution-based OLEDs were also highlighted.

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