White Polymer Light‐Emitting Devices for Solid‐State Lighting: Materials, Devices, and Recent Progress
暂无分享,去创建一个
Hongbin Wu | Wai-Yeung Wong | Hongbin Wu | Cheuk‐Lam Ho | W. Wong | Lei Ying | Cheuk-Lam Ho | Lei Ying | Yong Cao | Yong Cao
[1] P. Smet,et al. Selecting Conversion Phosphors for White Light-Emitting Diodes , 2011 .
[2] Junbiao Peng,et al. Highly efficient pure white polymer light-emitting devices based on poly(N-vinylcarbazole) doped with blue and red phosphorescent dyes , 2011 .
[3] Lei Wang,et al. Efficient Single Active Layer Electrophosphorescent White Polymer Light‐Emitting Diodes , 2008 .
[4] Junbiao Peng,et al. A Series of Energy‐Transfer Copolymers Derived from Fluorene and 4,7‐Dithienylbenzotriazole for High Efficiency Yellow, Orange, and White Light‐Emitting Diodes , 2011 .
[5] Fei Huang,et al. Highly Efficient Polymer White‐Light‐Emitting Diodes Based on Lithium Salts Doped Electron Transporting Layer , 2009 .
[6] A. Jen,et al. High-efficiency and solution processible multilayer white polymer light-emitting diodes using neutral conjugated surfactant as an electron injection layer , 2008 .
[7] Q. Pei,et al. Conjugated Polymer as Host for High Efficiency Blue and White Electrophosphorescence , 2011 .
[8] Jun Yeob Lee,et al. Solution processed high efficiency blue and white phosphorescent organic light-emitting diodes using a high triplet energy exciton blocking layer , 2011 .
[9] X. Jing,et al. White Electroluminescence from a Single Polymer System: Improved Performance by Means of Enhanced Efficiency and Red‐Shifted Luminescence of the Blue‐Light‐Emitting Species , 2007 .
[10] Junbiao Peng,et al. Molecular design of efficient white-light-emitting fluorene-based copolymers by mixing singlet and triplet emission , 2008 .
[11] Hongbin Wu,et al. Novel white-light-emitting polyfluorenes with benzothiadiazole and Ir complex on the backbone , 2009 .
[12] White light-emitting organic device with electroluminescent quantum dots and organic molecules , 2009 .
[13] Cheuk‐Lam Ho,et al. Functional metallophosphors for effective charge carrier injection/transport: New robust OLED materials with emerging applications , 2009 .
[14] P. Shih,et al. Exciplex Electroluminescence Induced by Cross-Linked Hole-Transporting Materials for White Light Polymer Light-Emitting Diodes , 2011 .
[15] Daniel Moses,et al. Multilayer Polymer Light‐Emitting Diodes: White‐Light Emission with High Efficiency , 2005 .
[16] O. Inganäs,et al. White light with phosphorescent protein fibrils in OLEDs. , 2010, Nano letters.
[17] A. Jen,et al. Highly Efficient White Polymer Light‐Emitting Diodes Based on Nanometer‐Scale Control of the Electron Injection Layer Morphology through Solvent Processing , 2008 .
[18] Q. Pei,et al. Poly(m-phenylene): Conjugated Polymer Host with High Triplet Energy for Efficient Blue Electrophosphorescence , 2010 .
[19] Wai-Yeung Wong,et al. Triphenylamine-dendronized pure red iridium phosphors with superior OLED efficiency/color purity trade-offs. , 2007, Angewandte Chemie.
[20] In Hwan Jung,et al. Single Chain White-Light-Emitting Polyfluorene Copolymers Containing Iridium Complex Coordinated on the Main Chain , 2010 .
[21] A. Monkman,et al. Exploiting a Dual‐Fluorescence Process in Fluorene–Dibenzothiophene‐S,S‐dioxideCo‐Polymers to Give Efficient Single Polymer LEDs with Broadened Emission , 2009 .
[22] Y. Y. Li,et al. Efficient white emitting copolymers based on bipolar fluorene-co-dibenzothiophene-S,S-dioxide-co-carbazole backbone , 2012, Chinese Journal of Polymer Science.
[23] Z. Xie,et al. White polymeric light-emitting diodes with high color rendering index , 2006 .
[24] G. Cheng,et al. Robust phosphorescent platinum(II) complexes containing tetradentate O^N^C^N ligands: excimeric excited state and application in organic white-light-emitting diodes. , 2013, Chemistry.
[25] Xiabin Jing,et al. White Electroluminescence from a Single‐Polymer System with Simultaneous Two‐Color Emission: Polyfluorene as the Blue Host and a 2,1,3‐Benzothiadiazole Derivative as the Orange Dopant , 2006 .
[26] K. Meerholz,et al. Improving the lifetime of white polymeric organic light-emitting diodes , 2009 .
[27] Yong Cao,et al. High‐Efficiency White‐Light‐Emitting Devices from a Single Polymer by Mixing Singlet and Triplet Emission , 2006 .
[28] A. Mikhailovsky,et al. A new approach to efficiency enhancement of polymer light-emitting diodes by deposition of anode buffer layers in the presence of additives , 2009 .
[29] S. Hsu,et al. Efficient white polymer-light-emitting-diodes based on polyfluorene end-capped with yellowish-green fluorescent dye and blended with a red phosphorescent iridium complex , 2009 .
[30] Feng Liu,et al. Recent Progress in Polymer White Light‐Emitting Materials and Devices , 2013 .
[31] Yuguang Ma,et al. Color‐stable White Electroluminescence Based on a Cross‐linked Network Film Prepared by Electrochemical Copolymerization , 2010, Advanced materials.
[32] Y. Geng,et al. Synthesis and characterization of white-light-emitting polyfluorenes containing orange phosphorescent moieties in the side chain , 2007 .
[33] Yanhu Li,et al. Highly efficient blue and all-phosphorescent white polymer light-emitting devices based on polyfluorene host , 2013 .
[34] Shiyong Liu,et al. Efficient multilayer electrophosphorescence white polymer light-emitting diodes with aluminum cathodes , 2011 .
[35] A. Mikhailovsky,et al. Solvent Effects on the Architecture and Performance of Polymer White‐Light‐Emitting Diodes with Conjugated Oligoelectrolyte Electron‐Transport Layers , 2009, Advanced materials.
[36] Jun Liu,et al. Three‐Color White Electroluminescence from a Single Polymer System with Blue, Green and Red Dopant Units as Individual Emissive Species and Polyfluorene as Individual Polymer Host , 2007 .
[37] Hongbin Wu,et al. Progress and perspective of polymer white light-emitting devices and materials. , 2009, Chemical Society reviews.
[38] Klaus Meerholz,et al. New crosslinkable hole conductors for blue-phosphorescent organic light-emitting diodes. , 2007, Angewandte Chemie.
[39] Zhiyuan Xie,et al. Efficient white polymer light-emitting diodes based on the control of a emissive polymer morphology through solvent processing , 2010 .
[40] Yang Yang,et al. White light from polymer light-emitting diodes: Utilization of fluorenone defects and exciplex , 2006 .
[41] Yong Cao,et al. Recent Advances in Organometallic Polymers as Highly Efficient Electrophosphorescent Emitters , 2007 .
[42] A. Monkman,et al. Exciton diffusion in polyfluorene copolymer thin films: kinetics, energy disorder and thermally assisted hopping. , 2009, Chemphyschem : a European journal of chemical physics and physical chemistry.
[43] S. Beaupré,et al. Solar‐Energy Production and Energy‐Efficient Lighting: Photovoltaic Devices and White‐Light‐Emitting Diodes Using Poly(2,7‐fluorene), Poly(2,7‐carbazole), and Poly(2,7‐dibenzosilole) Derivatives , 2010, Advanced materials.
[44] Stephen R. Forrest,et al. Management of singlet and triplet excitons for efficient white organic light-emitting devices , 2006, Nature.
[45] Baohua Zhang,et al. Balanced charge transport and enhanced white electroluminescence from a single white emissive polymer via thermal annealing , 2010 .
[46] J. Qin,et al. Stable white electroluminescence from single fluorene-based copolymers: using fluorenone as the green fluorophore and an iridium complex as the red phosphor on the main chain , 2008 .
[47] Q. Hou,et al. High‐Efficiency White‐Light Emission from a Single Copolymer: Fluorescent Blue, Green, and Red Chromophores on a Conjugated Polymer Backbone , 2007 .
[48] F. S. Wang,et al. Highly Efficient Pure‐White‐Light‐Emitting Diodes from a Single Polymer: Polyfluorene with Naphthalimide Moieties , 2006 .
[49] Junbiao Peng,et al. White-Light Emission from a Single Polymer with Singlet and Triplet Chromophores on the Backbone , 2006 .
[50] Qi Zhou,et al. The First Single Polymer with Simultaneous Blue, Green, and Red Emission for White Electroluminescence , 2005 .
[51] Junbiao Peng,et al. White emission polymer light-emitting devices with efficient electron injection from alcohol/water-soluble polymer/Al bilayer cathode , 2009 .
[52] Z. Xie,et al. White Electroluminescence from a Single‐Polymer System with Simultaneous Two‐Color Emission: Polyfluorene Blue Host and Side‐Chain‐Located Orange Dopant , 2007 .
[53] Richard H. Friend,et al. Barrier‐Free Electron–Hole Capture in Polymer Blend Heterojunction Light‐Emitting Diodes , 2003 .
[54] Wai-Yeung Wong,et al. Recent progress and current challenges in phosphorescent white organic light-emitting diodes (WOLEDs) , 2010 .
[55] Gregor Schwartz,et al. White organic light-emitting diodes with fluorescent tube efficiency , 2009, Nature.
[56] Junbiao Peng,et al. High-efficiency and good color quality white light-emitting devices based on polymer blend , 2009 .
[57] Junji Kido,et al. Development of high performance OLEDs for general lighting , 2013 .
[58] D. Tordera,et al. Ionic iridium complex and conjugated polymer used to solution-process a bilayer white light-emitting diode. , 2013, ACS applied materials & interfaces.
[59] Xiabin Jing,et al. White electroluminescence from polyfluorene chemically doped with 1,8-napthalimide moieties , 2004 .
[60] Junbiao Peng,et al. Highly Efficient and Spectrally Stable Blue-Light-Emitting Polyfluorenes Containing a Dibenzothiophene-S,S-dioxide Unit , 2008 .
[61] J. Zou,et al. Novel orange-red light-emitting polymers with cyclometaled iridium complex grafted in alkyl chain , 2009 .
[62] Hongbin Wu,et al. Novel green-light-emitting hyperbranched polymers with iridium complex as core and 3,6-carbazole-co-2,6-pyridine unit as branch , 2009 .
[63] C. Duty,et al. Semiconductor-nanocrystals-based white light-emitting diodes. , 2010, Small.
[64] D. Bradley,et al. Red, Green, and Blue Light‐Emitting Polyfluorenes Containing a Dibenzothiophene‐S,S‐Dioxide Unit and Efficient High‐Color‐Rendering‐Index White‐Light‐Emitting Diodes Made Therefrom , 2013 .
[65] Roberta Ragni,et al. Electroluminescent materials for white organic light emitting diodes. , 2011, Chemical Society reviews.
[66] Hongbin Wu,et al. Hyperbranched framework of interrupted π-conjugated polymers end-capped with high carrier-mobility moieties for stable light-emitting materials with low driving voltage , 2009 .
[67] Stephen R. Forrest,et al. White Organic Light‐Emitting Devices for Solid‐State Lighting , 2004 .
[68] Olivier Stéphan,et al. Fluorene–fluorenone copolymer: Stable and efficient yellow-emitting material for electroluminescent devices , 2002 .
[69] X. Jing,et al. A Novel, Bipolar Polymeric Host for Highly Efficient Blue Electrophosphorescence: a Non‐Conjugated Poly(aryl ether) Containing Triphenylphosphine Oxide Units in the Electron‐Transporting Main Chain and Carbazole Units in Hole‐Transporting Side Chains , 2011, Advanced materials.
[70] Junbiao Peng,et al. White polymer phosphorescent light-emitting devices with a new yellow-emitting iridium complex doped into polyfluorene , 2009 .
[71] X. Jing,et al. SINGLE POLYMER SYSTEMS FOR POLYMERIC WHITE-LIGHT-EMITTING DIODES: SINGLE POLYMER SYSTEMS FOR POLYMERIC WHITE-LIGHT-EMITTING DIODES , 2009 .
[72] X. Jing,et al. White electroluminescent single‐polymer achieved by incorporating three polyfluorene blue arms into a star‐shaped orange core , 2012 .
[73] Chia-Hsun Chen,et al. Recombination distribution and color tuning of multilayer organic light-emitting diode , 2005 .
[74] Junbiao Peng,et al. Efficient polymer white-light-emitting diodes , 2005 .
[75] Eduardo T. Iamazaki,et al. Polyfluorene based blends for white light emission , 2011 .
[76] Fei Deng,et al. Efficient white polymer light-emitting diodes based on a phosphorescent iridium complex and a fluorescent silole and carbazole copolymer , 2011 .
[77] Sujun Hu,et al. Simultaneous Optimization of Charge‐Carrier Balance and Luminous Efficacy in Highly Efficient White Polymer Light‐Emitting Devices , 2011, Advanced materials.
[78] X. Jing,et al. White Electroluminescence from Star‐like Single Polymer Systems: 2,1,3‐Benzothiadiazole Derivatives Dopant as Orange Cores and Polyfluorene Host as Six Blue Arms , 2011, Advanced materials.
[79] Yanhu Li,et al. Multihydroxylated aryl amine as a novel alcohol-processable hole-transport molecular glass exhibiting remarkable resistance to weakly polar solvents , 2013 .
[80] C. Shu,et al. Efficient white-light-emitting diodes based on poly(N-vinylcarbazole) doped with blue fluorescent and orange phosphorescent materials , 2006 .
[81] Bumjoon J. Kim,et al. Bipolar Copolymers as Host for Electroluminescent Devices: Effects of Molecular Structure on Film Morphology and Device Performance , 2007 .
[82] Bo Qu,et al. Recent Progresses on Materials for Electrophosphorescent Organic Light‐Emitting Devices , 2011, Advanced materials.
[83] Xiabin Jing,et al. Harvesting Excitons Via Two Parallel Channels for Efficient White Organic LEDs with Nearly 100% Internal Quantum Efficiency: Fabrication and Emission‐Mechanism Analysis , 2009 .
[84] X. Jing,et al. White Electroluminescence from a Phosphonate‐Functionalized Single‐Polymer System with Electron‐Trapping Effect , 2009 .
[85] Klaus Meerholz,et al. The Simple Way to Solution‐Processed Multilayer OLEDs – Layered Block‐Copolymer Networks by Living Cationic Polymerization , 2009 .
[86] H. Demir,et al. On the origin of high quality white light emission from a hybrid organic/inorganic light emitting diode using azide functionalized polyfluorene , 2008 .
[87] George G. Malliaras,et al. Semiperfluoroalkyl Polyfluorenes for Orthogonal Processing in Fluorous Solvents , 2010 .
[88] J. Qin,et al. Highly efficient single-layer white polymer light-emitting devices employing triphenylamine-based iridium dendritic complexes as orange emissive component , 2012 .
[89] A. Monkman,et al. Dipolar stabilization of emissive singlet charge transfer excited states in polyfluorene copolymers. , 2008, The journal of physical chemistry. B.
[90] Lei Chen,et al. High‐Performance All‐Polymer White‐Light‐Emitting Diodes Using Polyfluorene Containing Phosphonate Groups as an Efficient Electron‐Injection Layer , 2010 .
[91] S. Horng,et al. Broad band and white phosphorescent polymer light-emitting diodes in multilayer structure , 2008 .
[92] Kwanghee Lee,et al. Color stable white polymer light-emitting diodes with single emission layer , 2010 .
[93] Z. Xie,et al. Molecular Design on Highly Efficient White Electroluminescence from a Single‐Polymer System with Simultaneous Blue, Green, and Red Emission , 2007 .
[94] J. Qin,et al. Phosphoryl/Sulfonyl-Substituted Iridium Complexes as Blue Phosphorescent Emitters for Single-Layer Blue and White Organic Light-Emitting Diodes by Solution Process , 2012 .
[95] Junbiao Peng,et al. Efficient Polymer White‐Light‐Emitting Devices for Solid‐State Lighting , 2009 .
[96] Chen‐Han Chien,et al. Electrophosphorescent Polyfluorenes Containing Osmium Complexes in the Conjugated Backbone , 2008 .
[97] Liduo Wang,et al. Highly efficient solution-processed blue-green to red and white light-emitting diodes using cationic iridium complexes as dopants , 2010 .
[98] Xiabin Jing,et al. Novel White Electroluminescent Single Polymer Derived from Fluorene and Quinacridone , 2008 .
[99] Gang Li,et al. Achieving High‐Efficiency Polymer White‐Light‐Emitting Devices , 2006 .
[100] White-light-emitting diodes using miscible polymer blend doped with phosphorescent dye , 2011 .
[101] Yanhu Li,et al. Highly Efficient, Red-Emitting Hyperbranched Polymers Utilizing a Phenyl-Isoquinoline Iridium Complex as the Core , 2012 .
[102] X. Jing,et al. White electroluminescence from all-phosphorescent single polymers on a fluorinated poly(arylene ether phosphine oxide) backbone simultaneously grafted with blue and yellow phosphors. , 2012, Journal of the American Chemical Society.
[103] E. List,et al. WPLEDs prepared from main-chain fluorene–iridium(III) polymers , 2006 .
[104] Junbiao Peng,et al. Efficient hybrid white polymer light-emitting devices with electroluminescence covered the entire visible range and reduced efficiency roll-off , 2012 .
[105] H. Shim,et al. The Fabrication and Characterization of Single‐Component Polymeric White‐Light‐Emitting Diodes , 2005 .
[106] Dongge Ma,et al. Management of charges and excitons for high-performance white organic light-emitting diodes. , 2010, Chemical Society reviews.
[107] J. Zou,et al. Red light-emitting hyperbranched fluorene-alt-carbazole copolymers with an iridium complex as the core , 2011 .
[108] Martin R. Bryce,et al. Recent Advances in White Organic Light‐Emitting Materials and Devices (WOLEDs) , 2010, Advanced materials.
[109] X. Jing,et al. White Electroluminescence from a Star‐like Polymer with an Orange Emissive Core and Four Blue Emissive Arms , 2008 .
[110] C. Shu,et al. Efficient White‐Electrophosphorescent Devices Based on a Single Polyfluorene Copolymer , 2007 .
[111] Junbiao Peng,et al. Spectrally stable deep blue-emitting polyfluorenes containing dibenzothiophene-S,S-dioxide moiety , 2012 .
[112] Malte C. Gather,et al. Advanced Device Architecture for Highly Efficient Organic Light‐Emitting Diodes with an Orange‐Emitting Crosslinkable Iridium(III) Complex , 2008 .
[113] P. Blom,et al. Device Physics of White Polymer Light‐Emitting Diodes , 2012 .
[114] F. Huang,et al. Synthesis of novel triphenylamine-based conjugated polyelectrolytes and their application as hole-transport layers in polymeric light-emitting diodes , 2006 .
[115] Malte C. Gather,et al. On the Origin of the Color Shift in White‐Emitting OLEDs , 2007 .
[116] C. Zaldo,et al. Synthesis and tunable emission of novel polyfluorene co-polymers with 1,8-naphthalimide pendant groups and application in a single layer–single component white emitting device , 2010 .
[117] Yanhu Li,et al. Novel cyclometalated platinum (II) complex containing carrier-transporting groups: Synthesis, luminescence and application in single dopant white PLEDs , 2013 .
[118] Biwu Ma,et al. Site Isolation in Phosphorescent Bichromophoric Block Copolymers Designed for White Electroluminescence , 2010, Advanced materials.
[119] Hon Hang Fong,et al. Orthogonal Processing and Patterning Enabled by Highly Fluorinated Light‐Emitting Polymers , 2011, Advanced materials.
[120] Junbiao Peng,et al. Realization of highly efficient white polymer light-emitting devices via interfacial energy transfer from poly(N-vinylcarbazole) , 2010 .
[121] Fei Huang,et al. Water/alcohol soluble conjugated polymers as highly efficient electron transporting/injection layer in optoelectronic devices. , 2010, Chemical Society reviews.
[122] Dongge Ma,et al. Manipulating Charges and Excitons within a Single‐Host System to Accomplish Efficiency/CRI/Color‐Stability Trade‐off for High‐Performance OWLEDs , 2009 .