The fabrication and electrochemistry of a new class of graphene electrodes are presented. Through high-temperature annealing of hydrazine-reduced graphene oxides followed by high-speed centrifugation and size-selected ultrafiltration, flakes of reduced graphene oxides (r-GOs) of nanometer and submicrometer dimensions, respectively, are obtained and separated from the larger ones. Using <i>n</i>-dodecanethiol-modified Au ultramicroelectrodes of appropriately small sizes, quick dipping in dilute suspensions of these small r-GOs allows attachment of only a single flake on the thiol monolayer. The electrodes thus fabricated are used to study the heterogeneous electron transfer (ET) kinetics at r-GOs and the nanoscopic charge transport dynamics ...
New techniques for rapid graphite oxide reduction are illustrated. By exposing graphite oxide to a h...
Controlling the architecture of hybrid nanomaterial electrodes is critical for understanding their f...
International audienceGraphene is now recognized as the most likely carbon-based successor material ...
ABSTRACT: The fabrication and electrochemistry of a new class of graphene electrodes are presented. ...
In this paper, the influence of chemically reduced graphene oxide sheets (CRGOs) on the electrochemi...
The development of flexible electrodes is of considerable current interest because of the increasing...
The development of flexible electrodes is of considerable current interest because of the increasing...
Improving graphene-based electrode fabrication processes and developing robust methods for its funct...
We present here the electrochemistry at a photolithographically created isolated monolayer graphene ...
AbstractA micromanipulator combined with a microinjection system was employed to inject micro-drople...
Graphene research is currently at the frontier of electrochemistry. Many different graphene-based ma...
Thesis (Ph.D.)--University of Washington, 2015This dissertation mainly discusses the fundamental pro...
*S Supporting Information ABSTRACT: Currently, the fundamental factors that control the oxygen reduc...
Graphene is the name given to a monolayer of carbon atoms that are tightly packed into a two-dimensi...
Graphene, chemically modified graphenes (CMGs), and two-dimensional layered nanomaterials have attra...
New techniques for rapid graphite oxide reduction are illustrated. By exposing graphite oxide to a h...
Controlling the architecture of hybrid nanomaterial electrodes is critical for understanding their f...
International audienceGraphene is now recognized as the most likely carbon-based successor material ...
ABSTRACT: The fabrication and electrochemistry of a new class of graphene electrodes are presented. ...
In this paper, the influence of chemically reduced graphene oxide sheets (CRGOs) on the electrochemi...
The development of flexible electrodes is of considerable current interest because of the increasing...
The development of flexible electrodes is of considerable current interest because of the increasing...
Improving graphene-based electrode fabrication processes and developing robust methods for its funct...
We present here the electrochemistry at a photolithographically created isolated monolayer graphene ...
AbstractA micromanipulator combined with a microinjection system was employed to inject micro-drople...
Graphene research is currently at the frontier of electrochemistry. Many different graphene-based ma...
Thesis (Ph.D.)--University of Washington, 2015This dissertation mainly discusses the fundamental pro...
*S Supporting Information ABSTRACT: Currently, the fundamental factors that control the oxygen reduc...
Graphene is the name given to a monolayer of carbon atoms that are tightly packed into a two-dimensi...
Graphene, chemically modified graphenes (CMGs), and two-dimensional layered nanomaterials have attra...
New techniques for rapid graphite oxide reduction are illustrated. By exposing graphite oxide to a h...
Controlling the architecture of hybrid nanomaterial electrodes is critical for understanding their f...
International audienceGraphene is now recognized as the most likely carbon-based successor material ...