loadpatents
name:-0.014891147613525
name:-0.0091590881347656
name:-0.0014309883117676
Cairns; Elton J. Patent Filings

Cairns; Elton J.

Patent Applications and Registrations

Patent applications and USPTO patent grants for Cairns; Elton J..The latest application filed is for "core-shell structured nanoparticles for lithium-sulfur cells".

Company Profile
1.11.16
  • Cairns; Elton J. - Walnut Creek CA
  • Cairns; Elton J - Walnut Creek CA US
  • Cairns; Elton J. - Troy MI
  • Cairns; Elton J. - Lisle IL
*profile and listings may contain filings by different individuals or companies with the same name. Review application materials to confirm ownership/assignment.
Patent Activity
PatentDate
Core-shell Structured Nanoparticles For Lithium-sulfur Cells
App 20210344005 - Cairns; Elton J.
2021-11-04
Core-shell structured nanoparticles for lithium-sulfur cells
Grant 11,088,365 - Cairns August 10, 2
2021-08-10
Redox-active supramolecular polymer binders derived from perylene bisimide nanowires enable high-rate lithium-sulfur batteries
Grant 10,683,419 - Helms , et al.
2020-06-16
Core-shell Structured Nanoparticles For Lithium-sulfur Cells
App 20200099049 - Cairns; Elton J.
2020-03-26
Core-shell structured nanoparticles for lithium-sulfur cells
Grant 10,505,180 - Cairns Dec
2019-12-10
Graphene oxide as a sulfur immobilizer in high performance lithium/sulfur cells
Grant 10,044,031 - Zhang , et al. August 7, 2
2018-08-07
Graphene Oxide As A Sulfur Immobilizer In High Performance Lithium/sulfur Cells
App 20180138504 - Zhang; Yuegang ;   et al.
2018-05-17
Graphene oxide as a sulfur immobilizer in high performance lithium/sulfur cells
Grant 9,853,284 - Zhang , et al. December 26, 2
2017-12-26
Graphene Oxide As A Sulfur Immobilizer In High Performance Lithium/sulfur Cells
App 20170294646 - Zhang; Yuegang ;   et al.
2017-10-12
Redox-Active Supramolecular Polymer Binders Derived from Perylene Bisimide Nanowires Enable High-Rate Lithium-Sulfur Batteries
App 20170279122 - Helms; Brett A. ;   et al.
2017-09-28
Electrically rechargeable, dual chemistry, battery system for use in plug-in or hybrid electric vehicles
Grant 9,774,204 - Karim , et al. September 26, 2
2017-09-26
Lithium Sulfide-graphene Oxide Composite Material For Li/s Cells
App 20170233250 - Cairns; Elton J. ;   et al.
2017-08-17
Lithium Sulfide Materials And Composites Containing One Or More Conductive Coatings Made Therefrom
App 20160329559 - Cairns; Elton J. ;   et al.
2016-11-10
Durable Carbon-coated Li2s Core-shell Materials For High Performance Lithium/sulfur Cells
App 20160248084 - Cairns; Elton J. ;   et al.
2016-08-25
A Long-life, High-rate Lithium/sulfur Cell Utilizing A Holistic Approach To Enhancing Cell Performance
App 20160141620 - Cairns; Elton J. ;   et al.
2016-05-19
Core-shell Structured Nanoparticles For Lithium-sulfur Cells
App 20150311508 - Cairns; Elton J.
2015-10-29
Graphene Oxide As A Sulfur Immobilizer In High Performance Lithium/sulfur Cells
App 20140234702 - Zhang; Yuegang ;   et al.
2014-08-21
Electrically Rechargeable, Dual Chemistry, Battery System For Use In Plug-in Or Hybrid Electric Vehicles
App 20130141045 - KARIM; Nad ;   et al.
2013-06-06
Electrolyte Mixtures Useful For Li-ion Batteries
App 20090286163 - Shin; Joon Ho ;   et al.
2009-11-19
Modular electrochemical cell
Grant 3,887,396 - Walsh , et al. June 3, 1
1975-06-03
Secondary electrochemical power-producing cells having mixed cathode composition
Grant 3,884,715 - Gay , et al. May 20, 1
1975-05-20
Secondary Electrochemical Cells With A Chalcogen Cathode
Grant 3,833,421 - Rubischko , et al. September 3, 1
1974-09-03

uspto.report is an independent third-party trademark research tool that is not affiliated, endorsed, or sponsored by the United States Patent and Trademark Office (USPTO) or any other governmental organization. The information provided by uspto.report is based on publicly available data at the time of writing and is intended for informational purposes only.

While we strive to provide accurate and up-to-date information, we do not guarantee the accuracy, completeness, reliability, or suitability of the information displayed on this site. The use of this site is at your own risk. Any reliance you place on such information is therefore strictly at your own risk.

All official trademark data, including owner information, should be verified by visiting the official USPTO website at www.uspto.gov. This site is not intended to replace professional legal advice and should not be used as a substitute for consulting with a legal professional who is knowledgeable about trademark law.

© 2024 USPTO.report | Privacy Policy | Resources | RSS Feed of Trademarks | Trademark Filings Twitter Feed