Inventor profile of:

Larissa Levina

City:

Toronto

Country:

Canada

Published Applications:

29

Last publication date:

2019-07-25

Top Assignees for applications by Larissa Levina

The entities that hold a legal rights for patent applications filed by inventor Levina Larissa:

Recent patent applications by Levina Larissa

Larissa Levina from Toronto, CA has applied for patents for these inventions. The list has both pending applications and granted patents:

#1 | 2019-07-25
US20190225883A1
Chemistry; metallurgy

Semiconductor nanocrystal particles and production methods thereof

#2 | 2019-06-06
US20190173031A1
Electricity

Photodetectors and photovoltaics based on semiconductor nanocrystals

#3 | 2019-02-28
US20190067377A1
Electricity

Quantum dot optical devices with enhanced gain and sensitivity and methods of making same

#4 | 2018-03-15
US20180076405A1
Electricity

PHOTODETECTORS AND PHOTOVOLTAICS BASED ON SEMICONDUCTOR NANOCRYSTALS

#5 | 2018-02-01
US20180033827A1
Electricity

Quantum dot optical devices with enhanced gain and sensitivity and methods of making same

#6 | 2017-06-01
US20170154928A1
Electricity

Quantum dot optical devices with enhanced gain and sensitivity and methods of making same

#7 | 2016-10-13
US20160300880A1
Electricity

Quantum dot optical devices with enhanced gain and sensitivity and methods of making same

#8 | 2016-06-16
US20160172611A1
Electricity

Photodetectors and photovoltaics based on semiconductor nanocrystals

#9 | 2015-10-01
US20150280033A1
Electricity

Quantum dot optical devices with enhanced gain and sensitivity and methods of making same

#10 | 2015-05-28
US20150144879A1
Electricity

Photodetectors and photovoltaics based on semiconductor nanocrystals

#11 | 2014-10-02
US20140291608A1
Electricity

Quantum dot optical devices with enhanced gain and sensitivity and methods of making same

#12 | 2013-09-19
US20130244366A1
Electricity

Three-dimensional bicontinuous heterostructures, method of making, and their application in quantum dot-polymer nanocomposite photodetectors and photovoltaics

#13 | 2013-09-05
US20130228749A1
Electricity

Quantum dot optical devices with enhanced gain and sensitivity and methods of making same

#14 | 2013-01-10
US20130009129A1
Electricity

Quantum dot optical devices with enhanced gain and sensitivity and methods of making same

#15 | 2013-01-03
US20130001520A1
Electricity

Photodetectors and photovoltaics based on semiconductor nanocrystals

#16 | 2012-08-16
US20120208315A1
Electricity

Three-dimensional bicontinuous heterostructures, method of making, and their application in quantum dot-polymer nanocomposite photodetectors and photovoltaics

#17 | 2012-08-16
US20120205624A1
Electricity

Materials for electronic and optoelectronic devices having enhanced charge transfer

#18 | 2012-06-14
US20120145884A1
Electricity

Quantum dot optical devices with enhanced gain and sensitivity and methods of making same

#19 | 2012-04-26
US20120100699A1
Performing operations; transporting

Methods of making quantum dot films

#20 | 2011-12-29
US20110315959A1
Chemistry; metallurgy

Electronic and optoelectronic devices with quantum dot films

#21 | 2010-12-16
US20100317175A1
Performing operations; transporting

Methods of making quantum dot films

#22 | 2010-12-16
US20100314603A1
Chemistry; metallurgy

Electronic and optoelectronic devices with quantum dot films

#23 | 2010-12-16
US20100314529A1
Electricity

Quantum dot optical devices with enhanced gain and sensitivity and methods of making same

#24 | 2010-06-03
US20100133418A1
Electricity

Quantum dot optical devices with enhanced gain and sensitivity and methods of making same

#25 | 2010-02-25
US20100044676A1
Electricity

Photodetectors and photovoltaics based on semiconductor nanocrystals

#26 | 2009-12-10
US20090305452A1
Performing operations; transporting

Methods of making quantum dot films

#27 | 2007-07-26
US20070174939A1
Performing operations; transporting

Methods of making quantum dot films

#28 | 2007-06-14
US20070132052A1
Chemistry; metallurgy

Electronic and optoelectronic devices with quantum dot films

#29 | 2006-11-02
US20060243959A1
Electricity

Three-dimensional bicontinuous heterostructures, a method of making them, and their application in quantum dot-polymer nanocomposite photodetectors and photovoltaics

InventorID:

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