Graphene-based sample supports for in situ high-resolution TEM electrical investigations

Benedikt Westenfelder, Jannik C. Meyer, Johannes Biskupek, Gerardo Algara‐Siller, Lorenz Lechner, J. Kusterer, Ute Kaiser, Carl E. Krill, E. Kohn, F. Scholz

Journal of Physics D Applied Physics · 2011 · 20 citations · 21 references

Concepts

Abstract

Specially designed transmission electron microscopy (TEM) sample carriers have been developed to enable atomically resolved studies of the heat-induced evolution of adsorbates on graphene and their influence on electrical conductivity. Here, we present a strategy for graphene-based carrier realization, evaluating its design with respect to fabrication effort and applications potential. We demonstrate that electrical current can lead to very high temperatures in suspended graphene membranes, and we determine that current-induced cleaning of graphene results from Joule heating.

References

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