Multiscale Graphene Topographies Programmed by Sequential Mechanical Deformation.

PY Chen, J Sodhi, Y Qiu, TM Valentin… - … (Deerfield Beach, Fla …, 2016 - europepmc.org
PY Chen, J Sodhi, Y Qiu, TM Valentin, RS Steinberg, Z Wang, RH Hurt, IY Wong
Advanced Materials (Deerfield Beach, Fla.), 2016europepmc.org
Multigenerational graphene oxide architectures can be programmed by specific sequences
of mechanical deformations. Each new deformation results in a progressively larger set of
features decorated by smaller preexisting patterns, indicating a structural" memory." It is
shown that these multiscale architectures are superhydrophobic and display excellent
functionality as electrochemical electrodes.
Multigenerational graphene oxide architectures can be programmed by specific sequences of mechanical deformations. Each new deformation results in a progressively larger set of features decorated by smaller preexisting patterns, indicating a structural" memory." It is shown that these multiscale architectures are superhydrophobic and display excellent functionality as electrochemical electrodes.
europepmc.org
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