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Graphen Layer Formation On A Carbon Based Substrate

Technology Benefits
Outperforms the current fabrication methods that use Si/SiO2 substrates: retains thermal conductivity, improves current-carrying capacity of graphene-on-diamond devices, easy preparation & scalabilityOutperforms heat conduction of plastics by 600-times
Detailed Technology Description
None
Application No.
8652946
Others

Images


Applications

  • Thermal coating material for plastics, e.g. electronic component packaging, solid state lighting

Tech ID/UC Case

25912/2015-254-1


Related Cases

2015-254-1

*Abstract

Background:

Plastics are cheap, durable, light-weight and have a wide range of practical applications. Despite its universality, plastic materials suffer from low thermal conductivity that limits them from many other uses. Graphene has many remarkable properties, that in conjunction with other materials, can enhance their functionality and usage in various market segments. The graphene market is projected to reach $200M by 2026.

Brief Description:

UCR researchers have developed a novel system and method for forming graphene layers on a substrate. The system allows for direct growth of graphene on diamonds and low temperature growth of graphene using a carbon source. Due to the various novel features of the system, one can make the most of graphene’s excellent intrinsic thermal conductivity by substantially improving the radio frequency characteristics. Thermal conductivity can be strengthened by adjusting the size and alignment of the graphene flakes. 

*IP Issue Date
Feb 18, 2014
*Principal Investigator

Name: Alexander Balandin

Department:

Country/Region
USA

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