The triplet state of organo-transition metal compounds. Triplet harvesting and singlet harvesting for efficient OLEDs
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Andreas F. Rausch | Hartmut Yersin | Tobias Fischer | Rafał Czerwieniec | R. Czerwieniec | H. Yersin | Thomas Hofbeck | Thomas Hofbeck | A. Rausch | Tobias S. Fischer
[1] Tony Vlček. Preface “Controlling photophysical properties of metal complexes: Toward molecular photonics” , 2011 .
[2] Bo Qu,et al. Recent Progresses on Materials for Electrophosphorescent Organic Light‐Emitting Devices , 2011, Advanced materials.
[3] Andreas F. Rausch,et al. Organometallic Pt(II) and Ir(III) Triplet Emitters for OLED Applications and the Role of Spin–Orbit Coupling: A Study Based on High-Resolution Optical Spectroscopy , 2010 .
[4] T. Groy,et al. Facile synthesis and characterization of phosphorescent Pt(N(∧)C(∧)N)X complexes. , 2010, Inorganic chemistry.
[5] Sven Rau,et al. Catalytic hydrogen production at cobalt centres , 2010 .
[6] K. Y. Zhang,et al. Design of luminescent iridium(III) and rhenium(I) polypyridine complexes as in vitro and in vivo ion, molecular and biological probes , 2010 .
[7] Koichi Nozaki,et al. Recent advances in instrumentation for absolute emission quantum yield measurements , 2010 .
[8] Hartmut Yersin,et al. The triplet state of fac-Ir(ppy)3. , 2010, Inorganic chemistry.
[9] J. Lenhard,et al. Photophysical properties of the series fac- and mer-(1-phenylisoquinolinato-N∧C2')(x)(2-phenylpyridinato-N∧C2')(3-x)iridium(III) (x = 1-3). , 2010, Inorganic chemistry.
[10] U. Monkowius,et al. Bright sky-blue phosphorescence of [n-Bu4N][Pt(4,6-dFppy)(CN)2]: synthesis, crystal structure, and detailed photophysical studies. , 2010, Inorganic Chemistry.
[11] Fuyou Li,et al. Phosphorescent chemosensors based on heavy-metal complexes. , 2010, Chemical Society reviews.
[12] Alexander J. M. Miller,et al. E-type delayed fluorescence of a phosphine-supported Cu2(mu-NAr2)2 diamond core: harvesting singlet and triplet excitons in OLEDs. , 2010, Journal of the American Chemical Society.
[13] L. Bartolotti,et al. Highly luminescent tetradentate bis-cyclometalated platinum complexes: design, synthesis, structure, photophysics, and electroluminescence application. , 2010, Inorganic chemistry.
[14] R. Czerwieniec,et al. Triplet state properties of a red light emitting [Pt(s-thpy)(acac)] compound , 2010 .
[15] Flora L Thorp-Greenwood,et al. Application of d6 transition metal complexes in fluorescence cell imaging. , 2010, Chemical communications.
[16] H. Yersin,et al. Magnetic field effects on the phosphorescence of Pt(4,6-dFppy)(acac) - Tunability of the vibrational satellite structure , 2010 .
[17] Hartmut Yersin,et al. Photophysical properties and OLED applications of phosphorescent platinum(II) Schiff base complexes. , 2010, Chemistry.
[18] K. Zeitler. Photoredox catalysis with visible light. , 2009, Angewandte Chemie.
[19] H. Bässler,et al. Triplet states in organic semiconductors , 2009 .
[20] Dalip Singh Mehta,et al. A review on the light extraction techniques in organic electroluminescent devices , 2009 .
[21] J. Williams,et al. Probing the excited state properties of the highly phosphorescent Pt(dpyb)Cl compound by high-resolution optical spectroscopy. , 2009, Inorganic chemistry.
[22] Ruth E. Harding,et al. High-triplet-energy dendrons: enhancing the luminescence of deep blue phosphorescent iridium(III) complexes. , 2009, Journal of the American Chemical Society.
[23] Azad M. Hassan,et al. Exciplex quenching of a luminescent cyclometallated platinum complex by extremely poor Lewis bases. , 2009, Chemical communications.
[24] William A Goddard,et al. Temperature dependence of blue phosphorescent cyclometalated Ir(III) complexes. , 2009, Journal of the American Chemical Society.
[25] Wai Kin Chan,et al. Exceptional Oxygen Sensing Capabilities and Triplet State Properties of Ir(ppy-NPh2)3 , 2009 .
[26] M. Thompson,et al. Blue light emitting Ir(III) compounds for OLEDs - new insights into ancillary ligand effects on the emitting triplet state. , 2009, The journal of physical chemistry. A.
[27] Philip Coppens,et al. Capturing and analyzing the excited-state structure of a Cu(I) phenanthroline complex by time-resolved diffraction and theoretical calculations. , 2009, Journal of the American Chemical Society.
[28] Shaomin Ji,et al. Real-time monitoring of luminescent lifetime changes of PtOEP oxygen sensing film with LED/photodiode-based time-domain lifetime device. , 2009, The Analyst.
[29] D. Bruce,et al. Synthesis of cyclometallated platinum complexes with substituted thienylpyridines and detailed characterization of their luminescence properties. , 2009, Inorganic chemistry.
[30] J. Kalinowski,et al. Color-variable highly efficient organic electrophosphorescent diodes manipulating molecular exciton and excimer emissions , 2009 .
[31] M. Thompson,et al. Matrix effects on the triplet state of the OLED emitter Ir(4,6-dFppy)2(pic) (FIrpic): investigations by high-resolution optical spectroscopy. , 2009, Inorganic chemistry.
[32] A. Wedel,et al. Photophysical properties of Re(pbt)(CO)4 studied by high resolution spectroscopy , 2009 .
[33] M. Thompson,et al. Triplet state relaxation processes of the OLED emitter Pt(4,6-dFppy)(acac) , 2009 .
[34] Stefan Nowy,et al. Light extraction and optical loss mechanisms in organic light-emitting diodes: Influence of the emitter quantum efficiency , 2008 .
[35] J. Williams,et al. Optimising the luminescence of platinum(II) complexes and their application in organic light emitting devices (OLEDs) , 2008 .
[36] Stanley W Botchway,et al. Time-resolved and two-photon emission imaging microscopy of live cells with inert platinum complexes , 2008, Proceedings of the National Academy of Sciences.
[37] Ruth E. Harding,et al. Solution‐Processible Phosphorescent Blue Dendrimers Based on Biphenyl‐Dendrons and Fac‐tris(phenyltriazolyl)iridium(III) Cores , 2008 .
[38] Mark E. Thompson,et al. Matrix influence on the OLED emitter Ir(btp)2(acac) in polymeric host materials : Studies by persistent spectral hole burning , 2008 .
[39] Eugenio Coronado,et al. Near-quantitative internal quantum efficiency in a light-emitting electrochemical cell. , 2008, Inorganic chemistry.
[40] Christian Lennartz,et al. Controlling the Radiative Rate of Deep‐Blue Electrophosphorescent Organometallic Complexes by Singlet‐Triplet Gap Engineering , 2008 .
[41] Katsuaki Kobayashi,et al. Syntheses and phosphorescent properties of blue emissive iridium complexes with tridentate pyrazolyl ligands. , 2008, Inorganic chemistry.
[42] Stephen R. Forrest,et al. Quantum efficiency roll-off at high brightness in fluorescent and phosphorescent organic light emitting diodes , 2008 .
[43] Jian Li,et al. Efficient Blue‐ and White‐Emitting Electrophosphorescent Devices Based on Platinum(II) [1,3‐Difluoro‐4,6‐di(2‐pyridinyl)benzene] Chloride , 2008 .
[44] Young Kwan Kim,et al. Ligand effects on luminescence of new type blue light-emitting mono(2-phenylpyridinato)iridium(III) complexes. , 2008, Inorganic chemistry.
[45] Yun Chi,et al. Highly efficient blue-emitting iridium(III) carbene complexes and phosphorescent OLEDs. , 2008, Angewandte Chemie.
[46] Fuyou Li,et al. Cationic iridium(III) complexes for phosphorescence staining in the cytoplasm of living cells. , 2008, Chemical communications.
[47] H. Yersin,et al. Triplet state properties of [Os(phen)2(dppene)]2+ in different host materials and host to guest energy transfer in PVK , 2008 .
[48] Bei Chu,et al. Efficient white organic light-emitting diodes based on iridium complex sensitized copper complex , 2008 .
[49] N. Hoffmann,et al. Photochemical reactions as key steps in organic synthesis. , 2008, Chemical reviews.
[50] Yi‐Hung Liu,et al. Solid-state white light-emitting electrochemical cells using iridium-based cationic transition metal complexes. , 2008, Journal of the American Chemical Society.
[51] J. Kido,et al. Pyridine-Containing Bipolar Host Materials for Highly Efficient Blue Phosphorescent OLEDs , 2008 .
[52] Gregor Schwartz,et al. Reduced efficiency roll-off in high-efficiency hybrid white organic light-emitting diodes , 2008 .
[53] Michael Grätzel,et al. Synthesis, characterization, and DFT/TD-DFT calculations of highly phosphorescent blue light-emitting anionic iridium complexes. , 2008, Inorganic chemistry.
[54] Jan Kalinowski,et al. Mixing of Excimer and Exciplex Emission: A New Way to Improve White Light Emitting Organic Electrophosphorescent Diodes , 2007 .
[55] Gregor Schwartz,et al. Harvesting Triplet Excitons from Fluorescent Blue Emitters in White Organic Light‐Emitting Diodes , 2007 .
[56] D. Hertel,et al. Triplet-polaron quenching in conjugated polymers. , 2007, The journal of physical chemistry. B.
[57] Hartmut Yersin,et al. Highly efficient OLEDs with phosphorescent materials , 2007 .
[58] Qisheng Zhang,et al. Novel Heteroleptic CuI Complexes with Tunable Emission Color for Efficient Phosphorescent Light‐Emitting Diodes , 2007 .
[59] Junji Mizukami,et al. Blue Phosphorescent Iridium(III) Complex. A Reaction Path on the Triplet Potential Energy Surface , 2007 .
[60] Gregor Schwartz,et al. Reduced efficiency roll-off in phosphorescent organic light emitting diodes by suppression of triplet-triplet annihilation , 2007 .
[61] Hartmut Yersin,et al. Spin-orbit coupling routes and OLED performance: studies of blue-light emitting Ir(III) and Pt(II) complexes , 2007, SPIE Organic Photonics + Electronics.
[62] M. Thompson,et al. Phosphorescence dynamics and spin-lattice relaxation of the OLED emitter Ir(btp)2(acac) , 2007 .
[63] Ruomei Gao,et al. Cyclometalated iridium and platinum complexes as singlet oxygen photosensitizers: quantum yields, quenching rates and correlation with electronic structures. , 2007, Dalton transactions.
[64] Wai-Yeung Wong,et al. Metallated conjugated polymers as a new avenue towards high-efficiency polymer solar cells. , 2007, Nature materials.
[65] Hartmut Yersin,et al. Triplet state properties of the OLED emitter Ir(btp)2(acac): characterization by site-selective spectroscopy and application of high magnetic fields. , 2007, Inorganic chemistry.
[66] T. Meyer,et al. Rigid medium stabilization of metal-to-ligand charge transfer excited states. , 2007, The journal of physical chemistry. B.
[67] Sigurd Schrader,et al. Time-dependent density functional calculations of phosphorescence parameters for fac-tris(2-phenylpyridine) iridium , 2007 .
[68] Karsten Walzer,et al. Triplet-exciton quenching in organic phosphorescent light-emitting diodes with Ir-based emitters , 2007 .
[69] K. Walzer,et al. Highly efficient organic devices based on electrically doped transport layers. , 2007, Chemical reviews.
[70] Akira Tsuboyama,et al. Photophysical properties of highly luminescent copper(I) halide complexes chelated with 1,2-bis(diphenylphosphino)benzene. , 2007, Inorganic chemistry.
[71] Stephen R Forrest,et al. Highly efficient, near-infrared electrophosphorescence from a Pt-metalloporphyrin complex. , 2007, Angewandte Chemie.
[72] Yun Chi,et al. Phosphorescent dyes for organic light-emitting diodes. , 2007, Chemistry.
[73] Biwu Ma,et al. Platinum Binuclear Complexes as Phosphorescent Dopants for Monochromatic and White Organic Light‐Emitting Diodes , 2006 .
[74] Bradley D. Smith,et al. Anion recognition using dimetallic coordination complexes , 2006 .
[75] G. B. Shaw,et al. Ultrafast structural rearrangements in the MLCT excited state for copper(I) bis-phenanthrolines in solution. , 2006, Journal of the American Chemical Society.
[76] Shinya Obara,et al. Highly phosphorescent iridium complexes containing both tridentate bis(benzimidazolyl)-benzene or -pyridine and bidentate phenylpyridine: synthesis, photophysical properties, and theoretical study of Ir-bis(benzimidazolyl)benzene complex. , 2006, Inorganic chemistry.
[77] Bei Chu,et al. Highly efficient and color-tuning electrophosphorescent devices based on CuI complex , 2006 .
[78] W. Stampor,et al. Coexistence of dissociation and annihilation of excitons on charge carriers in organic phosphorescent emitters , 2006 .
[79] P. Douglas,et al. Coordination complexes exhibiting room-temperature phosphorescence: Evaluation of their suitability as triplet emitters in organic light emitting diodes , 2006 .
[80] J. Deaton,et al. Narrow-line and broadband spectra of iridium(III) complexes in a Shpol'skii matrix and an amorphous host. , 2006, The journal of physical chemistry. A.
[81] Fuyou Li,et al. Synthesis and Photophysical, Electrochemical, and Electrophosphorescent Properties of a Series of Iridium(III) Complexes Based on Quinoline Derivatives and Different β-Diketonate Ligands , 2006 .
[82] Bernard Geffroy,et al. Organic light‐emitting diode (OLED) technology: materials, devices and display technologies , 2006 .
[83] Neil Robertson,et al. Optimizing dyes for dye-sensitized solar cells. , 2006, Angewandte Chemie.
[84] A. Credi,et al. Handbook of Photochemistry , 2006 .
[85] Koichi Nozaki,et al. Theoretical Studies on Photophysical Properties and Mechanism of Phosphorescence in [fac‐Ir(2‐phenylpyridine)3] , 2006 .
[86] P. Chou,et al. Platinum(II) complexes with pyridyl azolate-based chelates: synthesis, structural characterization, and tuning of photo- and electrophosphorescence. , 2006, Inorganic chemistry.
[87] R. Czerwieniec,et al. A new cyclometalated rhenium(I) complex , 2005 .
[88] S. J. Farley,et al. Controlling emission energy, self-quenching, and excimer formation in highly luminescent N--C--N-coordinated platinum(II) complexes. , 2005, Inorganic chemistry.
[89] Stephen R Forrest,et al. Blue and near-UV phosphorescence from iridium complexes with cyclometalated pyrazolyl or N-heterocyclic carbene ligands. , 2005, Inorganic chemistry.
[90] Michael Grätzel,et al. Solar energy conversion by dye-sensitized photovoltaic cells. , 2005, Inorganic chemistry.
[91] J. Field,et al. Push-pull effects and emission from ternary complexes of platinum(II), substituted terpyridines, and the strong-field cyanide ion. , 2005, Dalton transactions.
[92] Biwu Ma,et al. Excimer and electron transfer quenching studies of a cyclometalated platinum complex , 2005 .
[93] Muhammed Yousufuddin,et al. Synthetic control of excited-state properties in cyclometalated Ir(III) complexes using ancillary ligands. , 2005, Inorganic chemistry.
[94] Jan Kalinowski,et al. Organic Light-Emitting Diodes , 2004 .
[95] Jan Birnstock,et al. High-efficiency and low-voltage p‐i‐n electrophosphorescent organic light-emitting diodes with double-emission layers , 2004 .
[96] P. Stößel,et al. Emission and absorption of Ir(ppy)2(CO)(Cl) – temperature dependence, phosphorescence decay dynamics, and assignment of excited states , 2004 .
[97] A. Neels,et al. Diastereoselective formation of chiral tris-cyclometalated iridium (III) complexes: characterization and photophysical properties. , 2004, Journal of the American Chemical Society.
[98] N. M. Iha,et al. Metal complex sensitizers in dye-sensitized solar cells , 2004 .
[99] J. Brennan,et al. Bridging the gap between in vitro and in vivo imaging: isostructural Re and 99mTc complexes for correlating fluorescence and radioimaging studies. , 2004, Journal of the American Chemical Society.
[100] C. Che,et al. Tetradentate Schiff base platinum(II) complexes as new class of phosphorescent materials for high-efficiency and white-light electroluminescent devices. , 2004, Chemical communications.
[101] C. Adachi,et al. Unusual Phosphorescence Characteristics of Ir(ppy)3 in a Solid Matrix at Low Temperatures , 2004 .
[102] Wolfgang Brütting,et al. Physics of organic semiconductors , 2004 .
[103] Qisheng Zhang,et al. Highly Efficient Green Phosphorescent Organic Light‐Emitting Diodes Based on CuI Complexes , 2004 .
[104] Hartmut Yersin,et al. Organometallic triplet emitters for OLED applications: controlling emission properties by chemical variation , 2004, SPIE Optics + Photonics.
[105] T. Ohno,et al. Intense fluorescence of metal-to-ligand charge transfer in [Pt(0)(binap)(2)] [binap = 2,2'-bis(diphenylphosphino)-1,1'-binaphthyl]. , 2004, Inorganic chemistry.
[106] Paul L Houston,et al. Solid-state electroluminescent devices based on transition metal complexes. , 2003, Chemical communications.
[107] M. V. Kulikova,et al. Synthesis and Photophysical Properties of a Series of Biscyclometalated Platinum(II) Complexes on the Basis of a Tridentate 2,6-Diphenylpyridine , 2003 .
[108] A. Beeby,et al. An alternative route to highly luminescent platinum(II) complexes: cyclometalation with N=C=N-coordinating dipyridylbenzene ligands. , 2003, Inorganic chemistry.
[109] Akira Tsuboyama,et al. Homoleptic cyclometalated iridium complexes with highly efficient red phosphorescence and application to organic light-emitting diode. , 2003, Journal of the American Chemical Society.
[110] Koichi Nozaki,et al. Structure-dependent photophysical properties of singlet and triplet metal-to-ligand charge transfer states in copper(I) bis(diimine) compounds. , 2003, Inorganic chemistry.
[111] Walter J. Finkenzeller,et al. Emission of Ir(ppy)3. Temperature dependence, decay dynamics, and magnetic field properties , 2003 .
[112] Y. Su,et al. Highly Efficient Red Electrophosphorescent Devices Based on Iridium Isoquinoline Complexes: Remarkable External Quantum Efficiency Over a Wide Range of Current , 2003 .
[113] Reinhard Schmidt,et al. Physical mechanisms of generation and deactivation of singlet oxygen. , 2003, Chemical reviews.
[114] H. Yersin,et al. Organometallic Pt(II) compounds. A complementary study of a triplet emitter based on optical high-resolution and optically detected magnetic resonance spectroscopy. , 2002, Inorganic chemistry.
[115] Stephen R. Forrest,et al. High efficiency single dopant white electrophosphorescent light emitting diodesElectronic supplementary information (ESI) available: emission spectra as a function of doping concentration for 3 in CBP, as well as the absorption and emission spectra of Irppz, CBP and mCP. See http://www.rsc.org/suppd , 2002 .
[116] M. Richter,et al. Electrochemiluminescence from Os(phen)2(dppene)2+ (phen = 1,10-phenanthroline and dppene = bis(diphenylphosphino)ethene). , 2002, Analytical chemistry.
[117] Wendi L. Fleeman,et al. Self-quenching and Cross-quenching Reactions of Excited Platinum(II) Diimine Complexes , 2002 .
[118] P. Jeffrey Hay,et al. Theoretical Studies of the Ground and Excited Electronic States in Cyclometalated Phenylpyridine Ir(III) Complexes Using Density Functional Theory , 2002 .
[119] S. Forrest,et al. Nearly 100% internal phosphorescence efficiency in an organic light emitting device , 2001 .
[120] Stephen R. Forrest,et al. Endothermic energy transfer: A mechanism for generating very efficient high-energy phosphorescent emission in organic materials , 2001 .
[121] R. Friend,et al. The energy gap law for triplet states in Pt-containing conjugated polymers and monomers. , 2001, Journal of the American Chemical Society.
[122] M. W. George,et al. Photophysics of diimine platinum(II) bis-acetylide complexes. , 2001, Inorganic chemistry.
[123] N. Armaroli,et al. Highly luminescent Cu(I)-phenanthroline complexes in rigid matrix and temperature dependence of the photophysical properties. , 2001, Journal of the American Chemical Society.
[124] D Murphy,et al. Highly phosphorescent bis-cyclometalated iridium complexes: synthesis, photophysical characterization, and use in organic light emitting diodes. , 2001, Journal of the American Chemical Society.
[125] D. McMillin,et al. Exciplex quenching of photoexcited platinum(II) terpyridines: influence of the orbital parentage , 2001 .
[126] Sergey Lamansky,et al. Synthesis and characterization of phosphorescent cyclometalated platinum complexes. , 2001, Inorganic chemistry.
[127] Peter I. Djurovich,et al. Molecularly doped polymer light emitting diodes utilizing phosphorescent Pt(II) and Ir(III) dopants , 2001 .
[128] H. Bässler,et al. Control of Charge Transport and Intermolecular Interaction in Organic Light-Emitting Diodes by Dendrimer Generation , 2001 .
[129] Stephen R. Forrest,et al. Transient analysis of organic electrophosphorescence. II. Transient analysis of triplet-triplet annihilation , 2000 .
[130] Johann Strasser,et al. Triplets in metal–organic compounds. Chemical tunability of relaxation dynamics , 2000 .
[131] Stephen R. Forrest,et al. High-efficiency organic electrophosphorescent devices with tris(2-phenylpyridine)iridium doped into electron-transporting materials , 2000 .
[132] Kurt D. Benkstein,et al. Luminescent sensor molecules based on coordinated metals: A review of recent developments , 2000 .
[133] D. McMillin,et al. Structural and photophysical studies of Cu(NN)2+ systems in the solid state. Emission at last from complexes with simple 1,10-phenanthroline ligands. , 2000, Inorganic chemistry.
[134] Richard H. Friend,et al. Electroluminescence emission pattern of organic light-emitting diodes: Implications for device efficiency calculations , 2000 .
[135] H. Yersin,et al. Intraligand charge transfer in the Pd(II) oxinate complex Pd(qol)2. Site-selective emission, excitation, and optically detected magnetic resonance. , 2000, Inorganic chemistry.
[136] L. V. Pieterson,et al. Luminescence and Energy Transfer of [Ru(bpy)3]2+, [Cr(ox)3]3-, and [Os(bpy)3]2+ in Three-Dimensional Oxalato-Networks , 2000 .
[137] C. Che,et al. Probing d8−d8 Interactions in Luminescent Mono- and Binuclear Cyclometalated Platinum(II) Complexes of 6-Phenyl-2,2‘-bipyridines , 1999 .
[138] S. Forrest,et al. VERY HIGH-EFFICIENCY GREEN ORGANIC LIGHT-EMITTING DEVICES BASED ON ELECTROPHOSPHORESCENCE , 1999 .
[139] R. Eisenberg,et al. Excited-State Self-Quenching Reactions of Square Planar Platinum(II) Diimine Complexes in Room-Temperature Fluid Solution. , 1999, Inorganic chemistry.
[140] D. J. Stufkens,et al. Ligand-dependent excited state behaviour of Re(I) and Ru(II) carbonyl–diimine complexes , 1998 .
[141] S. Forrest,et al. Highly efficient phosphorescent emission from organic electroluminescent devices , 1998, Nature.
[142] E. V. Veldhoven,et al. OPTICALLY DETECTED MAGNETIC RESONANCE IN THE LOWEST TRIPLET STATE OF PD(2-THPY)2 , 1998 .
[143] A. Islam,et al. Non-radiative processes of excited CT states of Ru(II) and Pt(II) compounds and excited d-d states of Rh(III) compounds in the solid state and at higher temperatures , 1998 .
[144] V. V. Korolev,et al. Oxygen diffusion in poly(methyl methacrylate) at low temperatures , 1998 .
[145] H. Gray,et al. Photooxidation of Platinum(II) Diimine Dithiolates , 1997 .
[146] H. Yersin,et al. Intraligand Charge Transfer in Pt(qol)(2). Characterization of Electronic States by High-Resolution Shpol'skii Spectroscopy. , 1997, Inorganic chemistry.
[147] H. Yersin,et al. Characterization of intraligand charge transfer transitions in Pd(qol)2, Pt(qol)2 and Pt(qtl)2 investigated by Shpol'skii spectroscopy , 1997 .
[148] H. Yersin,et al. Low-lying electronic states of [Rh(bpy)3]3+, [Pt(bpy)2]2+, and [Ru(bpy)3]2+. A comparative study based on highly resolved and time-resolved spectra , 1997 .
[149] M. V. Kulikova,et al. Photophysics, photochemistry and electrochemistry of mixed-ligand platinum(II) complexes with 2-phenylpyridine and 2-(2′-thienyl)pyridine as cyclometalating ligands , 1997 .
[150] M. Ônishi,et al. Excited-State Properties of the Ligand-Localized 3ππ* State of Cyclometalated Ruthenium(II) Complexes , 1997 .
[151] W. Kowalsky,et al. Organic light emitting diodes , 1996, Proceedings of 8th International Conference on Indium Phosphide and Related Materials.
[152] Hartmut Yersin,et al. Characterization of the Lowest Excited States of [Rh(bpy-h(8))(n)(bpy-d(8))(3-n)](3+) by Highly Resolved Emission and Excitation Spectra. , 1996, Inorganic chemistry.
[153] P. A. Anderson,et al. Effect of Delocalization and Rigidity in the Acceptor Ligand on MLCT Excited-State Decay. , 1996, Inorganic chemistry.
[154] Gelii V. Ponomarev,et al. Phosphorescent Complexes of Porphyrin Ketones: Optical Properties and Application to Oxygen Sensing , 1995 .
[155] R. Watts,et al. Synthesis, structure, and spectroscopic properties of ortho-metalated platinum(II) complexes , 1995 .
[156] Claude Daul,et al. A Density Functional Study of the MLCT States of [Ru(bpy)3]2+ in D3 Symmetry , 1994 .
[157] Donal D. C. Bradley,et al. Angular Dependence of the Emission from a Conjugated Polymer Light‐Emitting Diode: Implications for efficiency calculations , 1994 .
[158] T. Azumi,et al. Effect of the Covalent Bond on the Radiative Properties of the Ligand-Localized 3.pi..pi. State of Rhodium Complexes with benzo[h]quinoline , 1994 .
[159] C. Che,et al. Luminescent donor-acceptor platinum(ii) complexes , 1994 .
[160] A. V. Zelewsky,et al. Highly resolved optical spectra of palladium complex with deprotonated 2-(2-thienyl)pyridine (Pd(2-thpy)2) in a Shpol'skii matrix , 1993 .
[161] M. Shimada,et al. Effect of the ligand-field strength on the radiative properties of the ligand-localized 3.pi..pi.* state of rhodium complexes with 1,10-phenanthroline: proposed role of dd states , 1993 .
[162] M. Glasbeek,et al. Radiative properties and charge-transfer character of the phosphorescent triplet state in mixed rhodium chelates , 1993 .
[163] E. Krausz,et al. Stark-swept transient hole burning and resonant luminescence line narrowing in [Zn(2,2′-bipyridine)3](ClO4)2:Ru(II) , 1993 .
[164] K. Maruszewski,et al. Zeolite-entrapped ruthenium(II) complexes with bipyridine and related ligands. Elimination of ligand-field-state deactivation and increase in 3MLCT state lifetimes , 1993 .
[165] S. Sakaki,et al. Geometry, electronic structure, and coordination ability of (diiminoethane)bis(phosphine)copper(1+) at the lowest energy triplet metal-to-ligand charge-transfer excited state. A theoretical study , 1992 .
[166] M. Yagi,et al. Optically detected magnetic resonance study of the phosphorescent states of trans-2,2′-bipyridine, metal-free cis-2,2′-bipyridine and [Zn (bpy)]2+ , 1991 .
[167] J. Burt,et al. Zero-field splitting of the ligand-ligand charge-transfer emitting manifold of zinc(II) complexes , 1991 .
[168] D. Braun,et al. Isotope-induced shifts of electronic transitions: application to [Ru(bpy-h8)3]2+ and [Ru(bpy-d8)3]2+ in [Zn(bpy-h8)3](ClO4)2 , 1991 .
[169] J. Westra,et al. Localization of optical excitations in crystalline Rh3+-trisdiimine chelates , 1990 .
[170] D. McMillin,et al. Inorganic exciplexes revealed by temperature-dependent quenching studies , 1990 .
[171] J. G. Snijders,et al. Theoretical study of the electronic structures and absorption spectra of tetracyanoplatinate(2-) and dithallium tetracyanoplatinate(2-) based on density functional theory including relativistic effects , 1989 .
[172] S. Yamauchi,et al. A well resolved phosphorescence spectrum of [Ru(bpy)3]2+ in a dilute system , 1989 .
[173] V. Balzani,et al. Temperature dependence of the luminescence of cyclometalated palladium(II), rhodium(III), platinum(II), and platinum(IV) complexes , 1988 .
[174] V. Balzani,et al. Spectroscopic and Electrochemical Behavior of Cyclometalated Pd(II) Complexes , 1988 .
[175] D. McMillin,et al. Charge-transfer absorption and emission of Cu(NN)2+ systems , 1987 .
[176] D. McMillin,et al. Singlets, triplets, and exciplexes: complex, temperature-dependent emissions from (2,9-dimethyl-1,10-phenanthroline)bis(triphenylphosphine)copper(1+) and (1,10-phenanthroline)(triphenylphosphine)copper(1+) , 1987 .
[177] D. Braun,et al. Lowest excited states of [Ru(bpy)3]X2 host material, [Os(bpy)3]2+ guest complexes, and radiationless energy transfer , 1987 .
[178] G. Hensler,et al. Magnetic-field effects in the low-temperature polarized emission and absorption spectra of single-crystal tris(2,2'-bipyridine)ruthenium(2+) bis(hexafluorophosphate) ([Ru(bpy)3](PF6)2) , 1987 .
[179] Richard S. Lumpkin,et al. Time-resolved emission at the glass-to-fluid transition. Localization or delocalization in polypyridyl-based metal-to-ligand charge-transfer excited states of ruthenium and osmium? , 1987 .
[180] A. Maciejewski,et al. Thermally activated delayed S1 fluorescence of aromatic thiones , 1986 .
[181] S. Yamauchi,et al. Phosphorescence and zero-field optically detected magnetic resonance studies of the lowest excited triplet states of organometallic diimine complexes. 1. Rhodium bipyridine and rhodium phenanthroline complexes [Rh(bpy)3]3+ and [Rh(phen)3]3+ , 1986 .
[182] R. Ballardini,et al. Phosphorescent 8-quinolinol metal chelates. Excited-state properties and redox behavior , 1986 .
[183] T. Meyer. Photochemistry of metal coordination complexes: metal to ligand charge transfer excited states , 1986 .
[184] V. Balzani,et al. Luminescence of ortho-metallated platinum(II) complexes , 1985 .
[185] R. Verrall,et al. Radiationless decay of the second excited singlet states of aromatic thiones: Experimental verification of the energy gap law , 1984 .
[186] A. V. Zelewsky,et al. cis-Bis(2-phenylpyridine)platinum(II) (CBPPP). A simple molecular platinum compound , 1984 .
[187] Roland E. Gamache,et al. Temperature dependence of luminescence from Cu(NN)2+ systems in fluid solution. Evidence for the participation of two excited states , 1983 .
[188] E. Kober,et al. Concerning the absorption spectra of the ions M(bpy)32+ (M = Fe, Ru, Os; bpy = 2,2'-bipyridine) , 1982 .
[189] Kuppuswamy Kalyanasundaram,et al. Photophysics, photochemistry and solar energy conversion with tris(bipyridyl)ruthenium(II) and its analogues , 1982 .
[190] T. Meyer,et al. Photochemistry of tris(2,2'-bipyridine)ruthenium(2+) ion (Ru(bpy)32+). Solvent effects , 1982 .
[191] B. P. Sullivan,et al. Application of the energy gap law to the decay of charge transfer excited states, solvent effects , 1982 .
[192] G. Crosby,et al. Electronic spectroscopy of a diplatinum(II) octaphosphite complex , 1981 .
[193] G. Crosby,et al. Excited states of mixed-ligand chelates of ruthenium. II. Quantum yield and decay time measurements , 1981 .
[194] A. Ceulemans,et al. Charge-transfer spectra of iron(II)- and ruthenium(II)-tris(2,2'-bipyridyl) complexes , 1981 .
[195] H. Griesser,et al. The energy gap dependence of the radiationless transition rates in azulene and its derivatives , 1980 .
[196] David R. McMillin,et al. On the luminescence of bis (triphenylphosphine) phenanthroline copper (I) , 1980 .
[197] R. Watts,et al. Photochemistry of tris(2,2'-bipyridyl)ruthenium(II) in aqueous solutions , 1978 .
[198] N. Turro. Modern Molecular Photochemistry , 1978 .
[199] K. W. Hipps,et al. Infrared-optical double resonance and thermal modulation spectroscopy of the tris(2,2′bipyridine) ruthenium(II)cation , 1978 .
[200] J. N. Demas,et al. Energy transfer from luminescent transition metal complexes to oxygen , 1977 .
[201] G. Crosby,et al. Charge-transfer exited states of ruthenium(II) complexes. I. Quantum yield and decay measurements , 1975 .
[202] G. Crosby,et al. Spectroscopic and magnetic evidence for multiple-state emission from tris(2,2′-bipyridine) ruthenium (II) sulfate , 1974 .
[203] Hartmut Yersin,et al. Emission, Emissionslebensdauer und Absorption von [Cr urea6]X3-Einkristallen , 1974 .
[204] M. DeArmond,et al. Multiple emission in mixed ligand metal chelates , 1972 .
[205] J. Parks,et al. Prompt and delayed fluorescence from benzophenone , 1972 .
[206] M. El-Sayed,et al. New Techniques in Triplet State Phosphorescence Spectroscopy: Application to the Emission of 2,3‐Dichloroquinoxaline , 1971 .
[207] K. Freed,et al. Multiphonon Processes in the Nonradiative Decay of Large Molecules , 1970 .
[208] Joshua Jortner,et al. The energy gap law for radiationless transitions in large molecules , 1970 .
[209] W. Siebrand. Radiationless Transitions in Polyatomic Molecules. II. Triplet‐Ground‐State Transitions in Aromatic Hydrocarbons , 1967 .
[210] W. Siebrand. Radiationless Transitions in Polyatomic Molecules. I. Calculation of Franck—Condon Factors , 1967 .
[211] Sean P. McGlynn,et al. On the Multiplicity of the Phosphorescent State of Organic Molecules , 1966 .
[212] G. W. Robinson,et al. Electronic Excitation Transfer and Relaxation , 1963 .
[213] A. C. Albrecht. Vibronic—Spin-Orbit Perturbations and the Assignment of the Lowest Triplet State of Benzene , 1963 .
[214] X. W. Sun,et al. Existence of optimum intermolecular spacing for maximum exciton diffusion length in tris(2-phenylpyridine) iridium(III) , 2010 .
[215] J. Williams,et al. Luminescent Platinum Compounds: From Molecules to OLEDs , 2010 .
[216] A. Listorti,et al. Photochemistry and Photophysics of Coordination Compounds: Copper , 2007 .
[217] J. A. Gareth Williams,et al. Photochemistry and Photophysics of Coordination Compounds: Platinum , 2007 .
[218] S. Kang,et al. Blue‐Light‐Emitting Complexes: Cationic (2‐Phenylpyridinato)iridium(III) Complexes with Strong‐Field Ancillary Ligands , 2007 .
[219] Junji Kido,et al. Ultra High Efficiency Green Organic Light-Emitting Devices , 2006 .
[220] Joseph Shinar,et al. Organic Light-Emitting Devices , 2004 .
[221] Hartmut Yersin,et al. Triplet emitters for OLED applications. Mechanisms of exciton trapping and control of emission properties , 2004 .
[222] Hartmut Yersin,et al. Low-Lying Electronic States and Photophysical Properties of Organometallic Pd(II) and Pt(II) Compounds. Modern Research Trends Presented in Detailed Case Studies , 2001 .
[223] S. Kalinin,et al. A new and versatile fluorescence standard for quantum yield determination , 2001 .
[224] Max Glasbeek,et al. Excited state spectroscopy and excited state dynamics of Rh(III) and Pd(II) chelates as studied by optically detected magnetic resonance techniques. , 2001 .
[225] Heinz Langhals,et al. Spectroscopic properties of new and convenient standards for measuring fluorescence quantum yields , 1998 .
[226] T. Azumi,et al. Spectroscopy of the spin sublevels of transition metal complexes , 1997 .
[227] Hartmut Yersin,et al. TIME-RESOLVED VIBRATIONAL STRUCTURES OF THE TRIPLET SUBLEVEL EMISSION OF PD(2-THPY)2 , 1995 .
[228] Martin Klessinger,et al. Excited states and photochemistry of organic molecules , 1995 .
[229] A. Credi,et al. Electrochemistry of Functional Supramolecular Systems , 1994 .
[230] T. Meyer,et al. Photophysical properties of polypyridyl carbonyl complexes of rhenium(I) , 1991 .
[231] Edward M. Kober,et al. Application of the energy gap law to excited-state decay of osmium(II)-polypyridine complexes: calculation of relative nonradiative decay rates from emission spectral profiles , 1986 .
[232] T. Meyer,et al. Photochemistry of Ru( bpy)32+. Solvent Effects , 1983 .
[233] A. Szabó,et al. Modern quantum chemistry : introduction to advanced electronic structure theory , 1982 .
[234] D. McMillin,et al. Luminescence of some CuI complexes , 1982 .
[235] Steven L. Murov,et al. Handbook of photochemistry , 1973 .
[236] M. Wrighton,et al. Delayed Fluroescence and Phosphorescence of Aromatic Ketones in Solution , 1970 .
[237] S. McGlynn,et al. Molecular Spectroscopy of the Triplet State. , 1969 .
[238] D. Ilten,et al. Basic principles of ligand field theory , 1969 .
[239] C. A. Parker,et al. Triplet-singlet emission in fluid solutions. Phosphorescence of eosin , 1961 .