Graphene Info iconGraphene InfoSep 27, 2026 ~1 min source read

KERI grows graphene and graphite thin films directly on substrates at room temperature

Senior researcher Kim Ho-seop (left) and researcher Nam Su-hyeon of the Power Cable Research Center at the Korea Electrotechnology Research Institute (KERI) pose with a substrate coated with graphene. That transfer process makes it difficult to cover large areas reliably or to build up repeated, alternating stacks of graphene and metal layers for industrial use.

KERI grows graphene and graphite thin films directly on substrates at room temperature

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Senior researcher Kim Ho-seop (left) and researcher Nam Su-hyeon of the Power Cable Research Center at the Korea Electrotechnology Research Institute (KERI) pose with a substrate coated with graphene.

That transfer process makes it difficult to cover large areas reliably or to build up repeated, alternating stacks of graphene and metal layers for industrial use.

Graphene is widely seen as a promising material for reducing power loss and heat generation in electrical applications, but conventional production methods typically grow the film on one surface and then...

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Senior researcher Kim Ho-seop (left) and researcher Nam Su-hyeon of the Power Cable Research Center at the Korea Electrotechnology Research Institute (KERI) pose with a substrate coated with graphene. That transfer process makes it difficult to cover large areas reliably or to build up repeated, alternating stacks of graphene and metal layers for industrial use. Graphene is widely seen as a promising material for reducing power loss and heat generation in electrical applications, but conventional production methods typically grow the film on one surface and then require a separate transfer step to move and attach it onto the target material.

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Graphene is widely seen as a promising material for reducing power loss and heat generation in electrical applications, but conventional production methods typically grow the film on one surface and then require a separate transfer step to move and attach it onto the target material. To get around this, the KERI team used an epitaxial growth approach that causes carbon atoms to stack in ordered lines directly along the substrate surface during sputtering, a physical vapor deposition technique already common in industrial coating equipment.

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