Anaheim Hills, California
United States
55
2024-11-07
The entities that hold a legal rights for patent applications filed by inventor Thompson Mark E.:
Mark E. Thompson from Anaheim Hills, US has applied for patents for these inventions. The list has both pending applications and granted patents:
ORGANIC ELECTROLUMINESCENT MATERIALS AND DEVICES
#2 | 2024-08-01LUMINESCENT JANUS-TYPE, TWO-COORDINATED METAL COMPLEXES
#3 | 2023-08-10CARBENE COMPOUNDS AND ORGANIC ELECTROLUMINESCENT DEVICES
#4 | 2021-01-14Luminescent janus-type, two-coordinated metal complexes
#5 | 2020-12-24Organic electroluminescent materials and devices
#6 | 2019-06-20Carbene metal complexes as OLED materials
#7 | 2019-05-30Carbene compounds and organic electroluminescent devices
#8 | 2019-01-31Excited state management
#9 | 2018-07-05EXCITED STATE MANAGEMENT
#10 | 2018-02-01Organic electroluminescent materials and devices
#11 | 2017-05-25EXCITED STATE MANAGEMENT
#12 | 2016-12-08Organic electroluminescent materials and devices
#13 | 2016-10-06Organic electroluminescent devices
#14 | 2016-09-15Carbene metal complexes as OLED materials
#15 | 2016-08-11Host materials and ligands for dopants in organic light emitting diodes
#16 | 2015-12-03Excited state management
#17 | 2015-11-05Visible/Near-Infrared Porphyrin-Tape/C60 Organic Photodetectors
#18 | 2015-08-20Organic electroluminescent materials and devices
#19 | 2015-04-23Organic electroluminescent materials and devices
#20 | 2015-02-19Photoactive devices including porphyrinoids with coordinating additives
#21 | 2013-08-22Carbene metal complexes as OLED materials
#22 | 2012-05-31Materials and structures for enhancing the performance of organic light emitting devices
#23 | 2012-05-03Carbene metal complexes as OLED materials
#24 | 2011-10-20Organic photosensitive devices using subphthalocyanine compounds
#25 | 2011-07-14Visible/near-infrared porphyrin-tape/C60 organic photodetectors
#26 | 2010-02-04Organic photosensitive devices using subphthalocyanine compounds
#27 | 2010-01-14Carbene metal complexes as OLED materials
#28 | 2009-12-10Reversibly reducible metal complexes as electron transporting materials for OLEDs
#29 | 2009-12-10Carbene containing metal complexes as OLEDs
#30 | 2009-04-30ORGANIC LIGHT EMITTING MATERIALS WITH ANIONIC LIGAND
#31 | 2009-01-27Organic light emitting materials with anionic ligand
#32 | 2008-12-18Materials and structures for enhancing the performance of organic light emitting devices
#33 | 2007-11-29Organic photosensitive devices using subphthalocyanine compounds
#34 | 2007-06-14Multicolor organic electroluminescent device formed of vertically stacked light emitting devices
#35 | 2007-02-06Transparent contacts for organic devices
#36 | 2006-12-14OLEDs utilizing direct injection to the triplet state
#37 | 2006-12-14Fluorescent filtered electrophosphorescence
#38 | 2006-12-14Organic photosensitive cells having a reciprocal-carrier exciton blocking layer
#39 | 2006-12-07Fluorescent filtered electrophosphorescence
#40 | 2006-11-09OLEDs utilizing direct injection to the triplet state
#41 | 2006-07-13Reversibly reducible metal complexes as electron transporting materials for OLEDs
#42 | 2006-06-29Organic photosensitive optoelectronic device having a phenanthroline exciton blocking layer
#43 | 2006-03-14Organic light emitting materials and devices
#44 | 2006-02-02Luminescent compounds with carbene ligands
#45 | 2005-11-24Complexes with tridentate ligands
#46 | 2005-11-24Organometallic compounds for use in electroluminescent devices
#47 | 2005-11-24Cyclometallated iridium carbene complexes for use as hosts
#48 | 2005-11-24Cationic metal-carbene complexes
#49 | 2005-11-24OLEDs utilizing macrocyclic ligand systems
#50 | 2005-11-24OLEDs utilizing macrocyclic ligand systems
#51 | 2005-11-24Carbene containing metal complexes as OLEDs
#52 | 2005-11-24Carbene metal complexes as OLED materials
#53 | 2005-09-29OLEDs doped with phosphorescent compounds
#54 | 2005-06-09OLEDs having n-type doping
#55 | 2005-02-03Materials and structures for enhancing the performance of organic light emitting devices
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