Inventor
Ilhan A. Aksay
Inventor
Princeton, NJ, US
Overview
Patents· 66 as inventor
Public. Assignee & technology derived from the patent record. Each patent links to its LexDana page.
B82Yprimary
B82YSpecific uses or applications of nanostructures11%
Y10TTechnical subjects covered by former us classification11%
C01BNon-metallic elements10%
Y02EReduction of greenhouse gas [ghg] emissions, related to energy generation, transmission or distribution8%
H01GCapacitors6%
H05KPrinted circuits6%
C08KUse of inorganic or non-macromolecular organic substances as compounding ingredients5%
C01PIndexing scheme relating to structural and physical aspects of solid inorganic compounds3%
Y10STechnical subjects covered by former uspc cross-reference art collections [xracs] and digests3%
C08LCompositions of macromolecular compounds3%
PatentTitleYear
10,920,334Electrohydrodynamically formed structures of carbonaceous material202110,244,628Printed electronics201910,177,378Electrodes incorporating composites of graphene and selenium-sulfur compounds for improved rechargeable lithium batteries201910,068,716Graphene-ionic liquid composites201810,057,986Thermal overload device containing a polymer composition containing thermally exfoliated graphite oxide and method of making the same201810,017,632Functionalized graphene sheets having high carbon to oxygen ratios20189,926,414'Reinforced polymeric articles'20189,908,995'Multifunctional graphene-silicone elastomer nanocomposite, method of making the same, and uses thereof'20189,913,374'Printed electronics'20189,642,254'Conductive circuit containing a polymer composition containing thermally exfoliated graphite oxide and method of making the same'20179,546,092'Functionalized graphene sheets having high carbon to oxygen ratios'20179,512,290'Reinforced polymeric articles'20169,504,150'Printed electronics'20169,484,158'Graphene-ionic liquid composites'20169,441,076'Multifunctional graphene-silicone elastomer nanocomposite, method of making the same, and uses thereof'20169,346,680'Mesoporous metal oxide graphene nanocomposite materials'20169,321,894'Reinforced polymeric articles'20169,107,312'Printed electronics'20159,085,667'Reinforced polymeric articles'20159,070,942'Nanocomposite of graphene and metal oxide materials'20159,039,938'Coatings containing functionalized graphene sheets and articles coated therewith'20159,017,867'Self assembled multi-layer nanocomposite of graphene and metal oxide materials'20158,906,285'Electrohydrodynamic printing and manufacturing'20148,891,247'Conductive circuit containing a polymer composition containing thermally exfoliated graphite oxide and method of making the same'20148,697,485'Printed electronics'20148,563,169'Self assembled multi-layer nanocomposite of graphene and metal oxide materials'20138,557,442'Nanocomposite of graphene and metal oxide materials'20138,449,959'Reinforced polymeric articles'20138,278,757'Printed electronics'20128,257,867'Nanocomposite of graphene and metal oxide materials'20128,192,870'Supercapacitor and battery electrode containing thermally exfoliated graphite oxide'20128,110,524'Gas storage cylinder formed from a composition containing thermally exfoliated graphite'20128,110,026'Functional graphene-polymer nanocomposites for gas barrier applications'20128,105,976'Separation medium containing thermally exfoliated graphite oxide'20128,066,964'Thermally exfoliated graphite oxide'20118,063,134'Packaging material and flexible medical tubing containing thermally exfoliated graphite oxide'20118,053,508'Electrospray painted article containing thermally exfoliated graphite oxide and method for their manufacture'20118,048,214'Conductive ink containing thermally exfoliated graphite oxide and method a conductive circuit using the same'20118,048,950'Wire coating containing thermally exfoliated graphite oxide'20118,047,248'Tire containing thermally exfoliated graphite oxide'20118,048,931'Emulsifier containing thermally exfoliated graphite oxide'20117,935,754'Automotive body panel containing thermally exfoliated graphite oxide'20117,771,824'Bridged graphite oxide materials'20107,745,528'Functional graphene-rubber nanocomposites'20107,658,901'Thermally exfoliated graphite oxide'20107,659,350'Polymerization method for formation of thermally exfoliated graphite oxide containing polymer'20107,179,356'Biomimetic pathways for assembling inorganic thin films and oriented mesoscopic silicate patterns through guided growth'20076,638,885'Lyotropic liquid crystalline L3 phase silicated nanoporous monolithic composites and their production'20036,551,559'Sol-gel coated polarization vessels'20036,547,940'Biomimetic pathways for assembling inorganic thin films and oriented mesoscopic silicate patterns through guided growth'20036,533,903'Electrohydrodynamically patterned colloidal crystals'20036,329,741'Multilayer ceramic piezoelectric laminates with zinc oxide conductors'20016,283,997'Controlled architecture ceramic composites by stereolithography'20016,228,248'Biomimetic pathways for assembling inorganic thin films and oriented mesoscopic silicate patterns through guided growth'20016,046,139'Making large, single crystal, 123 YBCO superconductors'20006,033,547'Apparatus for electrohydrodynamically assembling patterned colloidal structures'20006,004,444'Biomimetic pathways for assembling inorganic thin films and oriented mesoscopic silicate patterns through guided growth'19995,869,432'Method for producing ceramic superconductor single crystals'19995,855,753'Method for electrohydrodynamically assembling patterned colloidal structures'19995,624,604'Method for stabilizing ceramic suspensions'19975,503,771'Process for susupension of ceramic or metal particles using biologically produced polymers'19965,135,691'Low temperature sintering of ceramic materials'19925,061,682'Ceramic precursor mixture and technique for converting the same to ceramic'19914,777,153'Process for the production of porous ceramics using decomposable polymeric microspheres and the resultant product'19884,702,770'Multipurpose boron carbide-aluminum composite and its manufacture via the control of the microstructure'19874,605,440'Boron-carbide-aluminum and boron-carbide-reactive metal cermets'1986Career & activity timeline
Assembled from patent assignee/location history and declaration credentials.
1986–1992Based in Seattle, WA, US· patent location history
1991–1996Based in Bellevue, WA, US· patent location history
1997–2021Based in Princeton, NJ, US· patent location history
1999–2021Patents assigned to UNIV PRINCETON (49)· patent assignee history
2011–2017Patents assigned to AKSAY ILHAN A (18)· patent assignee history
2011–2015Patents assigned to PRUD HOMME ROBERT K (8)· patent assignee history
2012–2019Patents assigned to VORBECK MATERIALS CORP (11)· patent assignee history
2012–2016Patents assigned to BATTELLE MEMORIAL INSTITUTE (6)· patent assignee history
2015Based in Princenton, NJ, US· patent location history
Inventor activity
Assignee and location history derived from the patent record.
Assignees
| Assignee | Patents | Span |
|---|---|---|
| UNIV PRINCETON | 49 | 1999–2021 |
| AKSAY ILHAN Aself | 18 | 2011–2017 |
| VORBECK MATERIALS CORP | 11 | 2012–2019 |
| PRUD HOMME ROBERT K | 8 | 2011–2015 |
| BATTELLE MEMORIAL INSTITUTE | 6 | 2012–2016 |
Locations
| Location | Patents | Span |
|---|---|---|
| Princeton, New Jersey, US | 59 | 1997–2021 |
| Seattle, Washington, US | 4 | 1986–1992 |
| Bellevue, Washington, US | 2 | 1991–1996 |
| Princenton, New Jersey, US | 1 | 2015 |