Inventor

Andrew G. Rinzler

Inventor
Newberry, FL, US

Overview

66→
Patents
2001–2020
Patent span
General tagging of new technological developments
Primary field (CPC Y)

Patents· 66 as inventor

Public. Assignee & technology derived from the patent record. Each patent links to its LexDana page.

Y10Sprimary
Y10STechnical subjects covered by former uspc cross-reference art collections [xracs] and digests8%
Y10TTechnical subjects covered by former us classification8%
C01BNon-metallic elements8%
Y02EReduction of greenhouse gas [ghg] emissions, related to energy generation, transmission or distribution6%
G11BInformation storage based on relative movement between record carrier and transducer6%
G11CStatic stores6%
B82YSpecific uses or applications of nanostructures6%
Y02PClimate change mitigation technologies in the production or processing of goods5%
H01MProcesses or means, e.g. batteries, for the direct conversion of chemical energy into electrical energy5%
H10FInorganic semiconductor devices sensitive to infrared radiation, light, electromagnetic radiation of shorter wavelength or corpuscular radiation5%
PatentTitleYear
10,815,576Carbon dioxide reduction over carbon-containing materials202010,553,711Tunable barrier transistors for high power electronics202010,181,614Hydrogen oxidation and generation over carbon films201910,115,972Single wall carbon nanotube based air cathodes201810,089,930Brightness compensation in a display20189,775,241'Nanotube dispersants and dispersant free nanotube films therefrom'20179,768,460'Hydrogen oxidation and generation over carbon films'20179,742,018'Hydrogen oxidation and generation over carbon films'20179,642,253'Nanotube dispersants and dispersant free nanotube films therefrom'20179,642,252'Nanotube dispersants and dispersant free nanotube films therefrom'20179,601,707'Ambipolar vertical field effect transistor'20179,368,291'Highly accessible, nanotube electrodes for large surface area contact applications'20169,331,217'Electronic gate enhancement of Schottky junction solar cells'20169,214,644'Active matrix dilute source enabled vertical organic light emitting transistor'20158,961,830'Electroactive polymers containing pendant pi-interacting/binding substituents, their carbon nanotube composites, and processes to form the same'20158,952,361'Semiconductor devices including an electrically percolating source layer and methods of fabricating the same'20158,564,048'Contact barrier modulation of field effect transistors'20138,232,561'Nanotube enabled, gate-voltage controlled light emitting diodes'20128,217,386'Short channel vertical FETs'20128,168,965'Semiconductor device and method using nanotube contacts'20128,124,259'Enhanced electrical contact to microbes in microbial fuel cells'20128,049,106'Method for forming interpenetrating networks of distinct materials and devices therefrom'20117,972,699'Transparent and electrically conductive single wall carbon nanotube films'20117,959,779'Macroscopically manipulable nanoscale devices made from nanotube assemblies'20117,939,136'Method for forming composites of sub-arrays of fullerene nanotubes'20117,776,444'Transparent and electrically conductive single wall carbon nanotube films'20107,704,479'Highly accessible, nanotube electrodes for large surface area contact applications'20107,655,302'Continuous fiber of fullerene nanotubes'20107,632,569'Array of fullerene nanotubes'20097,572,743'Low temperature methods for forming patterned electrically conductive thin films and patterned articles therefrom'20097,510,695'Method for forming a patterned array of fullerene nanotubes'20097,481,989'Method for cutting fullerene nanotubes'20097,419,624'Methods for producing composites of fullerene nanotubes and compositions thereof'20087,419,651'Method for producing self-assembled objects comprising fullerene nanotubes and compositions thereof'20087,390,767'Method for producing a catalyst support and compositions thereof'20087,390,477'Fullerene nanotube compositions'20087,357,906'Method for fractionating single-wall carbon nanotubes'20087,354,563'Method for purification of as-produced fullerene nanotubes'20087,338,915'Ropes of single-wall carbon nanotubes and compositions thereof'20087,261,852'Transparent electrodes from single wall carbon nanotubes'20077,205,069'Membrane comprising an array of single-wall carbon nanotubes'20077,115,864'Method for purification of as-produced single-wall carbon nanotubes'20067,108,841'Method for forming a patterned array of single-wall carbon nanotubes'20067,105,596'Methods for producing composites of single-wall carbon nanotubes and compositions thereof'20067,097,820'Continuous fiber of single-wall carbon nanotubes'20067,087,207'Method for forming an array of single-wall carbon nanotubes in an electric field and compositions thereof'20067,071,406'Array of single-wall carbon nanotubes'20067,070,754'Ropes of single-wall carbon nanotubes'20067,067,098'Method for forming an array of single -wall carbon nanotubes and compositions thereof'20067,052,666'Method for cutting single-wall carbon nanotubes'20067,048,999'Method for producing self-assembled objects comprising single-wall carbon nanotubes and compositions thereof'20067,048,903'Macroscopically manipulable nanoscale devices made from nanotube assemblies'20067,041,620'Method for producing a catalyst support and compositions thereof'20067,008,604'Method for cutting nanotubes'20066,986,876'Method for forming composites of sub-arrays of single-wall carbon nanotubes'20066,979,709'Continuous fiber of single-wall carbon nanotubes'20056,969,504'Electrical conductors comprising single-wall carbon nanotubes'20056,949,237'Method for growing single-wall carbon nanotubes utlizing seed molecules'20056,939,525'Method of forming composite arrays of single-wall carbon nanotubes and compositions thereof'20056,936,233'Method for purification of as-produced single-wall carbon nanotubes'20056,824,755'Method for producing a catalyst support and compositions thereof'20046,756,025'Method for growing single-wall carbon nanotubes utilizing seed molecules'20046,756,026'Method for growing continuous carbon fiber and compositions thereof'20046,749,827'Method for growing continuous fiber'20046,683,783'Carbon fibers formed from single-wall carbon nanotubes'20046,183,714'Method of making ropes of single-wall carbon nanotubes'2001

Career & activity timeline

Assembled from patent assignee/location history and declaration credentials.

2001–2008Based in Houston, TX, US· patent location history
2004–2011Patents assigned to UNIV RICE WILLIAM M (35)· patent assignee history
2004–2020Based in Newberry, FL, US· patent location history
2007–2020Patents assigned to UNIV FLORIDA (27)· patent assignee history
2012–2018Patents assigned to RINZLER ANDREW GABRIEL (11)· patent assignee history
2012–2015Patents assigned to LIU BO (5)· patent assignee history
2012–2015Patents assigned to MCCARTHY MITCHELL AUSTIN (4)· patent assignee history
2015Based in Gainesville, FL, US· patent location history

Inventor activity

Assignee and location history derived from the patent record.

Assignees
AssigneePatentsSpan
UNIV RICE WILLIAM M352004–2011
UNIV FLORIDA272007–2020
RINZLER ANDREW GABRIELself112012–2018
LIU BO52012–2015
MCCARTHY MITCHELL AUSTIN42012–2015
Locations
LocationPatentsSpan
Newberry, Florida, US532004–2020
Houston, Texas, US112001–2008
Gainesville, Florida, US22015