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Updated: May 11, 2026

Development of a 3D Graphene Electrode Dielectrophoretic Device
Published on: June 22, 2014
Chemical gradients on graphene to drive droplet motion
Sandra C Hernández1, Charlee J C Bennett, Chad E Junkermeier
1NRC Postdoctoral Research Associateship Program, Naval Research Laboratory, Washington, DC 20375, USA. sandra.hangarter.ctr@nrl.navy.mil
Abstract:
This work demonstrates the production of a well-controlled, chemical gradient on the surface of graphene. By inducing a gradient of oxygen functional groups, drops of water and dimethyl-methylphosphonate (a nerve agent simulant) are "pulled" in the direction of increasing oxygen content, while fluorine gradients "push" the droplet motion in the direction of decreasing fluorine content. The direction of motion is broadly attributed to increasing/decreasing hydrophilicity, which is correlated to high/low adhesion and binding energy. Such tunability in surface chemistry provides additional capabilities in device design for applications ranging from microfluidics to chemical sensing.

