Inventor
Thomas M. Leslie
Inventor
Horseheads, NY, US
Overview
Patents· 44 as inventor
Public. Assignee & technology derived from the patent record. Each patent links to its LexDana page.
G02Fprimary
G02FOptical devices or arrangements for the control of light by modification of the optical properties of the media of the elements involved therein19%
C09KMaterials for miscellaneous applications, not provided for elsewhere17%
C07DHeterocyclic compounds13%
C08GMacromolecular compounds obtained otherwise than by reactions only involving unsaturated carbon-to-carbon bonds11%
G02BOptical elements, systems or apparatus6%
Y10TTechnical subjects covered by former us classification6%
H10KOrganic electric solid-state devices5%
C03CChemical composition of glasses, glazes or vitreous enamels4%
C07CAcyclic or carbocyclic compounds4%
C08FMacromolecular compounds obtained by reactions only involving carbon-to-carbon unsaturated bonds4%
PatentTitleYear
9,493,766'PCR reaction cleanup buffers'20168,669,343'Five-ring fused heteroaromatic compounds and conjugated polymers thereof'20148,575,354'Fused thiophenes and methods for making and using same'20138,487,114'Fused thiophenes and methods for making and using same'20138,394,918'Five-ring fused heteroaromatic compounds and conjugated polymers thereof'20138,278,410'Fused thiophenes, articles, and methods thereof'20127,919,634'Fused thiophenes, articles, and methods thereof'20117,781,187'Fluorescent dyes'20107,148,383'Low loss high refractive index vinyl sulfide compounds and method of making same'20066,933,412'Low loss high refractive index vinyl sulfide compounds and method of making same'20056,610,813'Highly-halogenated low optical loss polymer'20036,584,266'Chromophores for polymeric thin films and optical waveguides and devices comprising the same'20036,563,973'Low-index waveguide liquid crystal cross-connect'20036,559,921'Liquid crystal planar non-blocking NxN cross-connect'20036,514,434'Electro-optic chromophore bridge compounds and donor-bridge compounds for polymeric thin film waveguides'20036,470,131'Highly-halogenated low optical loss polymer'20026,448,416'Electron acceptors for polymeric thin film waveguide media'20026,444,830'Electron acceptors for polymeric thin film waveguide media'20026,415,075'Photothermal optical signal limiter'20026,393,190'Chromophores for polymeric thin films and optical waveguides and devices comprising the same'20025,212,250'Poly(maleic anhydride) copolymers with side chains exhibiting nonlinear optical response'19935,200,481'Tetraazaporphyrin monomers and polymers'19935,187,234'Vinyl polymers exhibiting nonlinear optical response'19934,997,977'Process for the production of esters exhibiting nonlinear optical response'19914,944,895'Process for producing liquid crystalline composites'19904,937,013'Process for preparing liquid crystalline polymer composites'19904,937,017'Nonlinear optically responsive inorganic-organic composite compositions'19904,933,111'Electrooptic device having a liquid crystalline polymer composite optical component'19904,898,454'Optical light switch or modulator device with a liquid crystalline composite optical component'19904,887,889'Organopolysiloxanes exhibiting nonlinear response'19894,885,113'Nonlinear optically responsive inorganic-organic composite compositions'19894,882,402'Side chain liquid crystalline polymeric media exhibiting third order nonlinear optical response'19894,869,847'Microdisperse polymer/liquid crystal composite'19894,867,538'Organic nonlinear optical media'19894,855,078'Organopolysiloxanes exhibiting nonlinear response'19894,828,888'Liquid crystalline polymer composites'19894,814,211'Liquid crystalline composites'19894,807,968'Polymer blends exhibiting nonlinear optical response'19894,801,659'Organopolysiloxanes exhibiting nonlinear optical response'19894,796,976'Side chain liquid crystalline polymeric media exhibiting third order nonlinear optical response'19894,762,912'Process for producing polymeric media exhibiting third order nonlinear optical response'19884,615,586'Liquid crystal devices'19864,613,209'Smectic liquid crystals'19864,561,726'Alignment of ferroelectric LCDs'1985Career & activity timeline
Assembled from patent assignee/location history and declaration credentials.
1985–1986Patents assigned to AT & T BELL LAB (3)· patent assignee history
1985–1991Based in Lebanon, NJ, US· patent location history
1986–1990Based in Hunterdon County, NJ, US· patent location history
1988–1993Patents assigned to HOECHST CELANESE CORP (21)· patent assignee history
1988–1990Based in Clinton Township, NJ, US· patent location history
1993Based in Huntsville, AL, US· patent location history
2002–2016Patents assigned to CORNING INC (20)· patent assignee history
2002–2016Based in Horseheads, NY, US· patent location history
2012–2014Patents assigned to HE MINGQIAN (4)· patent assignee history
2012–2014Patents assigned to LESLIE THOMAS MARK (4)· patent assignee history
Inventor activity
Assignee and location history derived from the patent record.
Assignees
| Assignee | Patents | Span |
|---|---|---|
| HOECHST CELANESE CORP | 21 | 1988–1993 |
| CORNING INC | 20 | 2002–2016 |
| HE MINGQIAN | 4 | 2012–2014 |
| LESLIE THOMAS MARKself | 4 | 2012–2014 |
| AT & T BELL LAB | 3 | 1985–1986 |
Locations
| Location | Patents | Span |
|---|---|---|
| Horseheads, New York, US | 20 | 2002–2016 |
| Hunterdon County, New Jersey, US | 14 | 1986–1990 |
| Clinton Township, New Jersey, US | 4 | 1988–1990 |
| Huntsville, AL, US | 2 | 1993 |
| Lebanon, New Jersey, US | 2 | 1985–1991 |