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Procedure for the Transfer of Polymer Films Onto Porous Substrates with Minimized Defects
Published on: June 22, 2019
Surface energy modification by spin-cast, large-area graphene film for block copolymer lithography
Bong Hoon Kim1, Ju Young Kim, Seong-Jun Jeong
1Department of Materials Science and Engineering, KI for the Nanocentury, KAIST, Daejeon 305-701, Republic of Korea.
Abstract:
We demonstrate a surface energy modification method exploiting graphene film. Spin-cast, atomic layer thick, large-area reduced graphene film successfully played the role of surface energy modifier for arbitrary surfaces. The degree of reduction enabled the tuning of the surface energy. Sufficiently reduced graphene served as a neutral surface modifier to induce surface perpendicular lamellae or cylinders in a block copolymer nanotemplate. Our approach integrating large-area graphene film preparation with block copolymer lithography is potentially advantageous in creating semiconducting graphene nanoribbons and nanoporous graphene.

