Inventor
Jing Wang
Inventor
Aurora, IL, US
Overview
Patents· 42 as inventor
Public. Assignee & technology derived from the patent record. Each patent links to its LexDana page.
Y02Eprimary
Y02EReduction of greenhouse gas [ghg] emissions, related to energy generation, transmission or distribution6%
C01FCompounds of the metals beryllium, magnesium, aluminium, calcium, strontium, barium, radium, thorium, or of the rare-earth metals6%
C08GMacromolecular compounds obtained otherwise than by reactions only involving unsaturated carbon-to-carbon bonds5%
C08JWorking-up4%
G01NInvestigating or analysing materials by determining their chemical or physical properties4%
B82YSpecific uses or applications of nanostructures4%
Y10TTechnical subjects covered by former us classification4%
H01GCapacitors3%
H01LSemiconductor devices3%
H01MProcesses or means, e.g. batteries, for the direct conversion of chemical energy into electrical energy3%
PatentTitleYear
10,604,699Organic rare earth solid micelle, preparation method therefor, and method for increasing photoelectric conversion efficiency of solar battery202010,601,045Porous carbon electrode assembly for electrochemical devices202010,473,635Detecting apparatus and volatile organic compound detector201910,476,294Particle counter system and detecting apparatus201910,427,950Recovery of mining processing product using boronic acid-containing polymers201910,407,581Non-aqueous compositions having sulfonated polythiophenes suitable for use in organic electronics201910,392,472Biodegradable cross-linked polymer and methods of preparing the same201910,385,229Non-aqueous ink compositions containing metallic nanoparticles suitable for use in organic electronics201910,379,096Particle counter system and detecting apparatus201910,329,510Self-healable coatings and methods of making the same201910,173,149Methods for separating carbon nanotubes201910,161,853Microfluidic platforms for optical biosensing201810,158,340Micromechanical devices based on piezoelectric resonators201810,112,843Use of polyols as scale control reagents in the mining processes20189,951,178Biodegradable cross-linked polymer, vascular stent and manufacturing methods therefor20189,691,554'Microstructured crystalline device in confined space, a dye-sensitized solar cell, and method of preparation thereof'20179,687,847'Microfluidic platforms for optical biosensing'20179,691,912'Devices having nanoscale structures and methods for making same'20179,683,153'Freeze conditioning agents utilizing crude glycerin and flowback and produced water'20179,666,342'Magneto-dielectric polymer nanocomposites'20179,443,662'Microstructured crystalline device in confined space, a dye-sensitized solar cell, and method of preparation thereof'20169,384,877'Magneto dielectric polymer nanocomposites and method of making'20169,290,620'Production and composition of glycerol based polyols'20169,284,625'Use of polyols as scale control reagents in the mining processes'20169,276,556'Micromechanical devices based on piezoelectric resonators'20169,222,856'Measurement of particle morphology using filtration'20159,199,855'Chemical treatment to improve red mud separation and washing in the bayer process'20159,174,852'Methods to improve filtration for the Bayer process'20159,160,305'Capacitively and piezoelectrically transduced micromechanical resonators'20159,102,995'Cross-linked ethylsulfonated dihydroxypropyl cellulose'20159,090,744'Process for preparing polysulfone'20158,414,805'Porous carbon foam composites, applications, and processes of making'20138,394,290'Recovery of alumina trihydrate during the Bayer process using scleroglucan'20138,298,508'Recovery of alumina trihydrate during the bayer process using cross-linked polysaccharides'20128,252,266'Recovery of alumina trihydrate during the bayer process using scleroglucan'20128,181,505'Measurement system for the multidimensional aerosol characterization'20127,919,024'Processes for producing monolithic porous carbon disks from aromatic organic precursors'20117,704,422'Process for producing monolithic porous carbon disks from aromatic organic precursors'20107,094,622'Polymer based tunneling sensor'20067,074,880'Polyimide aerogels, carbon aerogels, and metal carbide aerogels and methods of making same'20067,071,287'Aerogel metallic compositions'20065,347,864'Liquid level measuring apparatus'1994Career & activity timeline
Assembled from patent assignee/location history and declaration credentials.
2006–2020Based in Amherst, MA, US· patent location history
2012–2020Patents assigned to WANG JING (15)· patent assignee history
2012–2018Patents assigned to NALCO CO (9)· patent assignee history
2012–2016Patents assigned to LI XIAOJIN HARRY (5)· patent assignee history
2012–2016Patents assigned to BODE HEINRICH E (4)· patent assignee history
2012–2019Based in Aurora, IL, US· patent location history
2015–2018Patents assigned to UNIV SOUTH FLORIDA (10)· patent assignee history
2015–2018Based in Tampa, FL, US· patent location history
2019Based in Hsinchu, TW· patent location history
2019Based in Gibsonia, PA, US· patent location history
Inventor activity
Assignee and location history derived from the patent record.
Assignees
| Assignee | Patents | Span |
|---|---|---|
| WANG JINGself | 15 | 2012–2020 |
| UNIV SOUTH FLORIDA | 10 | 2015–2018 |
| NALCO CO | 9 | 2012–2018 |
| LI XIAOJIN HARRY | 5 | 2012–2016 |
| BODE HEINRICH E | 4 | 2012–2016 |
Locations
| Location | Patents | Span |
|---|---|---|
| Aurora, Illinois, US | 11 | 2012–2019 |
| Tampa, Florida, US | 10 | 2015–2018 |
| Amherst, Massachusetts, US | 6 | 2006–2020 |
| Hsinchu, TW | 3 | 2019 |
| Gibsonia, Pennsylvania, US | 2 | 2019 |