Inventor
Kwan-Yue Jen
Inventor
Kenmore, WA, US
Overview
Patents· 39 as inventor
Public. Assignee & technology derived from the patent record. Each patent links to its LexDana page.
C08Gprimary
C08GMacromolecular compounds obtained otherwise than by reactions only involving unsaturated carbon-to-carbon bonds18%
G02FOptical devices or arrangements for the control of light by modification of the optical properties of the media of the elements involved therein16%
C07DHeterocyclic compounds15%
H01BCables8%
C08FMacromolecular compounds obtained by reactions only involving carbon-to-carbon unsaturated bonds6%
H10KOrganic electric solid-state devices5%
Y10TTechnical subjects covered by former us classification5%
C07FAcyclic, carbocyclic or heterocyclic compounds containing elements other than carbon, hydrogen, halogen, oxygen, nitrogen, sulfur, selenium or tellurium4%
B82YSpecific uses or applications of nanostructures3%
C08JWorking-up3%
PatentTitleYear
9,214,574'Fullerene surfactants and their use in polymer solar cells'20159,023,248'Diels-Alder crosslinkable dendritic nonlinear optic chromophores and polymer composites'20158,648,332'Phenyltetraene-based nonlinear optical chromophores'20148,552,419'Cross-conjugated polymers for organic electronic devices and related methods'20138,409,713'Crosslinkable polymer host containing a nonlinear optical chromophore guest'20138,394,499'Crosslinkable polymer host having pendant nonlinear optical chromophores and containing a nonlinear optical chromophore guest'20138,343,636'Crosslinkable hole-transporting materials for organic light-emitting devices'20138,217,390'Polymer charge transport material for optoelectronic devices'20128,173,045'Diels-Alder crosslinkable dendritic nonlinear optic chromophores and polymer composites'20127,749,408'Electro-optic dendrimer-based glass composites'20107,601,849'Nonlinear optical compounds and related macrostructures'20097,507,840'Acceptor compounds useful for making hyperpolarizable organic chromophores'20097,425,643'Electron acceptors for nonlinear optical chromophores'20087,416,791'Osmium complexes and related organic light-emitting devices'20087,346,259'Thermally reversibly crosslinkable polymer as cladding material for electro-optic devices'20087,307,173'Pyrroline chromophores'20077,268,188'Reversible crosslinking method for making an electro-optic polymer'20077,144,960'Reversible crosslinking method for making an electro-optic polymer'20067,078,542'Nonlinear optical compounds and methods for their preparation'20067,029,606'Hyperpolarizable organic chromophores'20067,014,796'Nonlinear optical compounds and methods for their preparation'20066,051,722'Compounds, polymers, resin compositions and nonlinear optical devices'20005,834,575'Compounds and polymers, resin compositions, nonlinear optical element and nonlinear optical devices, and production process therefor'19985,736,592'Process for intramolecularly condensing a non-linear optical polyamic acid composition'19985,718,845'Tricyanovinyl substitution process for NLO polymers'19985,688,906'Highly efficient nonlinear optical polyimides'19975,679,763'Polyquinoline-based nonlinear optical materials'19975,514,799'1,1-vinyl substituted nonlinear optical materials'19965,395,556'Tricyanovinyl substitution process for NLO polymers'19955,221,761'Melt transesterification process for the production of polycarbonates'19935,162,473'Neutral and electrically conductive poly(heterocyclic vinylenes) and processes for preparing same'19925,159,040'Neutral and electrically conductive poly(heterocyclic vinylenes) and processes for preparing same'19925,139,703'Neutral and electrically conductive poly(heterocyclic vinylenes) and processes for preparing same'19925,069,820'Thermally stable forms of electrically conductive polyaniline'19915,068,060'Neutral and electrically conductive poly(heterocyclic vinylenes) and processes for preparing same'19914,963,206'Method of making a thermal window glazing with conductive polymer coating to block radiative heating'19904,900,782'Stabilized polyelectrolyte precursors of poly(aromatic and heteroaromatic vinylenes)'19904,789,748'Process for preparing electrically conductive poly(isothianaphthene) from 1,3-dihydroisothianaphthene'19884,711,742'Solution processible forms of neutral and electrically conductive poly(substituted heterocycles)'1987Career & activity timeline
Assembled from patent assignee/location history and declaration credentials.
1987–1992Based in Flanders, NJ, US· patent location history
1988–1992Patents assigned to ALLIED SIGNAL INC (8)· patent assignee history
1990–1991Based in Succasunna, NJ, US· patent location history
1993–1998Based in Old Bridge, NJ, US· patent location history
1995–1998Patents assigned to ENICHEM SPA (6)· patent assignee history
1998–2000Based in Morganville, NJ, US· patent location history
2006–2015Patents assigned to UNIV WASHINGTON (20)· patent assignee history
2006–2015Based in Kenmore, WA, US· patent location history
2012–2015Patents assigned to JEN KWAN-YUE (8)· patent assignee history
2012–2015Patents assigned to LUO JINGDONG (5)· patent assignee history
Inventor activity
Assignee and location history derived from the patent record.
Assignees
| Assignee | Patents | Span |
|---|---|---|
| UNIV WASHINGTON | 20 | 2006–2015 |
| ALLIED SIGNAL INC | 8 | 1988–1992 |
| JEN KWAN-YUEself | 8 | 2012–2015 |
| ENICHEM SPA | 6 | 1995–1998 |
| LUO JINGDONG | 5 | 2012–2015 |
Locations
| Location | Patents | Span |
|---|---|---|
| Kenmore, Washington, US | 21 | 2006–2015 |
| Old Bridge, New Jersey, US | 7 | 1993–1998 |
| Flanders, New Jersey, US | 6 | 1987–1992 |
| Morganville, New Jersey, US | 2 | 1998–2000 |
| Succasunna, New Jersey, US | 2 | 1990–1991 |