FIELD: chemistry.
SUBSTANCE: invention is meant for electronics and microelectronics and can be used in making coatings performing carrier transfer or storage functions, in transistors, electrodes, light sources, solar cells, field-emission cathodes, displays and sensors. The coating contains molecules of carbon nanobuds linked to each other by at least one fullerene group 2. Functional groups can be bonded to molecules of carbon nanobuds.
EFFECT: coating has on-off ratio greater than 1, which increases its stability, reduces the size of electric elements, increases their rate of operation and efficiency.
11 cl, 12 dwg
Title | Year | Author | Number |
---|---|---|---|
USE OF MOLECULE OF CARBON NANOBUD AND DEVICES COMPRISING SUCH MOLECULES | 2009 |
|
RU2497237C2 |
CARBON NANOTUBES FUNCTIONALISED WITH FULLERENES | 2006 |
|
RU2437832C2 |
METHOD OF MANUFACTURING CARBON NANOTUBE FUNCTIONALISED BY FULLERENES, COMPOSITE MATERIAL, THICK OR THIN FILM, WIRE AND DEVICE MADE WITH USE OF OBTAINED NANOTUBES | 2006 |
|
RU2483022C2 |
TWO-COMPONENT ELECTRON-SELECTIVE BUFFER LAYER AND PHOTOVOLTAIC CELLS BASED THEREON | 2012 |
|
RU2595342C2 |
FULLERENE DERIVATIVES WITH LOW ELECTRON AFFINITY AND PHOTOVOLTAIC CELL BASED THEREON | 2013 |
|
RU2598079C1 |
DEVICE FOR CONVERTING SOLAR ENERGY TO ELECTRICAL ENERGY | 2009 |
|
RU2516242C2 |
HYBRID PHOTOCONVERTER MODIFIED WITH MAXENES | 2018 |
|
RU2694086C1 |
METHOD OF PRODUCING CARBON NANOMATERIALS AND DEVICE FOR ITS IMPLEMENTATION | 2011 |
|
RU2489350C2 |
METHOD OF PRODUCING CYCLOPROPANE FULLERENE DERIVATIVES, USE OF ORGANIC FULLERENE DERIVATIVES AS MATERIALS FOR ELECTRONIC SEMICONDUCTOR DEVICES, ORGANIC FIELD-EFFECT TRANSISTOR, ORGANIC PHOTOVOLTAIC CELL, ORGANIC FIELD-EFFECT TRANSISTOR AND ORGANIC PHOTOVOLTAIC CELL | 2011 |
|
RU2519782C2 |
METHODS OF PRODUCTION OF A SUPERCONDUCTIVE LAMINATED MATERIAL AND A SUPERCONDUCTIVE LAYERED ELEMENT PRODUCED OUT OF IT | 2000 |
|
RU2243298C2 |
Authors
Dates
2013-07-27—Published
2008-10-30—Filed