International audienceWe discuss the electrodeposition of two-dimensional (2D) Pt-nanostructures on Highly Oriented Pyrolytic Graphite (HOPG) achieved under constant applied potential versus a Pt counter electrode (E appl = ca. −2.2 V vs. NHE, normal hydrogen electrode). The deposition conditions are discussed in terms of the electrochemical behavior of the electrodeposition precursor (H 2 PtCl 6). We performed cyclic voltammetry (CV) of the electrochemical Pt deposit on HOPG and on Pt substrates to study the relevant phenomena that affect the morphology of Pt deposition. Under conditions where the Pt deposition occurs and H 2 evolution is occurring at the diffusion-limited rate (−0.3 V vs. NHE), Pt forms larger structures on the surface of...
Platinum catalysts are prepared on highly ordered pyrolytic graphite (HOPG). Two different methods a...
Nanoporous materials have received much attention because of their fundamental scientific significan...
A method for assembling Pt nanoparticles (5 nm diameter) on indium tin oxide (ITO) and highly orient...
We discuss the electrodeposition of two-dimensional (2D) Pt-nanostructures on Highly Oriented Pyroly...
We discuss the electrodeposition of two-dimensional (2D) Pt-nanostructures on Highly Oriented Pyroly...
We discuss the electrodeposition of two-dimensional (2D) Pt-nanostructures on Highly Oriented Pyroly...
Continuous thin platinum nanoplatelet networks and thin films were obtained on the flat surface of h...
Continuous thin platinum nanoplatelet networks and thin films were obtained on the flat surface of h...
Platinum nanoparticles were obtained on glassy carbon (GC) by spontaneous deposition in a 1 mM H2PtC...
The early stages of Pt electrodeposition (0.675-0.620 V vs RHE) on highly oriented pyrolytic graphit...
The early stages of Pt electrodeposition (0.675-0.620 V vs RHE) on highly oriented pyrolytic graphit...
The early stages of Pt electrodeposition (0.675-0.620 V vs RHE) on highly oriented pyrolytic graphit...
The topography of platinum electrodes produced by electrodeposition (19 to 200 mC cm-2) on highly or...
Platinum crystal growth by electrochemical deposition on highly orientated pyrolytic graphite (HOPG)...
Scanning tunneling microscopy (STM) and conventional electrochemical techniques were utilized to inv...
Platinum catalysts are prepared on highly ordered pyrolytic graphite (HOPG). Two different methods a...
Nanoporous materials have received much attention because of their fundamental scientific significan...
A method for assembling Pt nanoparticles (5 nm diameter) on indium tin oxide (ITO) and highly orient...
We discuss the electrodeposition of two-dimensional (2D) Pt-nanostructures on Highly Oriented Pyroly...
We discuss the electrodeposition of two-dimensional (2D) Pt-nanostructures on Highly Oriented Pyroly...
We discuss the electrodeposition of two-dimensional (2D) Pt-nanostructures on Highly Oriented Pyroly...
Continuous thin platinum nanoplatelet networks and thin films were obtained on the flat surface of h...
Continuous thin platinum nanoplatelet networks and thin films were obtained on the flat surface of h...
Platinum nanoparticles were obtained on glassy carbon (GC) by spontaneous deposition in a 1 mM H2PtC...
The early stages of Pt electrodeposition (0.675-0.620 V vs RHE) on highly oriented pyrolytic graphit...
The early stages of Pt electrodeposition (0.675-0.620 V vs RHE) on highly oriented pyrolytic graphit...
The early stages of Pt electrodeposition (0.675-0.620 V vs RHE) on highly oriented pyrolytic graphit...
The topography of platinum electrodes produced by electrodeposition (19 to 200 mC cm-2) on highly or...
Platinum crystal growth by electrochemical deposition on highly orientated pyrolytic graphite (HOPG)...
Scanning tunneling microscopy (STM) and conventional electrochemical techniques were utilized to inv...
Platinum catalysts are prepared on highly ordered pyrolytic graphite (HOPG). Two different methods a...
Nanoporous materials have received much attention because of their fundamental scientific significan...
A method for assembling Pt nanoparticles (5 nm diameter) on indium tin oxide (ITO) and highly orient...