Graphene transistor as a probe for streaming potential.
basic_science · Level V
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- Record sourced from PubMed, PMID 22568874.
- Also identified by DOI 10.1021/nl300603v and PMC identifier 4433749.
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Abstract
We explore the dependence of electrical transport in a graphene field effect transistor (GraFET) on the flow of water/sodium chloride electrolyte within the immediate vicinity of that transistor. We find large and reproducible shifts in the charge neutrality point of GraFETs that are dependent on the liquid velocity and the ion concentration. We show that these shifts are consistent with the variation of the local electrochemical potential of the liquid next to graphene that are caused by the fluid flow (streaming potential). Furthermore, we utilize the sensitivity of electrical transport in GraFETs to the parameters of the fluid flow to demonstrate graphene-based mass flow and ionic concentration sensing. We successfully detect a flow as small as ∼70 nL/min and detect a change in the ionic concentration as small as ∼40 nM.
Medical subject headings
- Graphite
- Nanostructures
- Rheology
- Transistors, Electronic