Electrochemistry at the edge of a single graphene layer in a nanopore.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 23249127.
- Also identified by DOI 10.1021/nn305400n and PMC identifier 3551991.
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Abstract
We study the electrochemistry of single layer graphene edges using a nanopore-based structure consisting of stacked graphene and Al(2)O(3) dielectric layers. Nanopores, with diameters ranging from 5 to 20 nm, are formed by an electron beam sculpting process on the stacked layers. This leads to a unique edge structure which, along with the atomically thin nature of the embedded graphene electrode, demonstrates electrochemical current densities as high as 1.2 × 10(4) A/cm(2). The graphene edge embedded structure offers a unique capability to study the electrochemical exchange at an individual graphene edge, isolated from the basal plane electrochemical activity. We also report ionic current modulation in the nanopore by biasing the embedded graphene terminal with respect to the electrodes in the fluid. The high electrochemical specific current density for a graphene nanopore-based device can have many applications in sensitive chemical and biological sensing, and energy storage devices.
Medical subject headings
- Biosensing Techniques
- Electrodes
- Graphite
- Nanostructures