arXiv · 1512.07770
Chemical Bonding of Transition-metal Co$_{13}$ Clusters with Graphene
Abstract
We carried out density functional calculation to study Co$_{13}$ clusters on graphene. We deposit several free isomers in different disposition respect to hexagonal lattice nodes, studying even the $hcp$ $2d$ isomer recently obtained as the most stable one. Surprisingly, Co$_{13}$ clusters bonded to graphene prefer $icosahedron-like$ structures where the low lying isomer is much distorted, because it is linked with more bonds than in previous works. For any isomer the most stable position binds to graphene by the Co atoms that can lose electrons. We find that the charge transfers between graphene and clusters are small enough to conclude that the Co-graphene binding is not ionic-like but chemical. Besides, the same order of stability among the different isomers on doped graphene is well kept. These findings could also be of interest for magnetic clusters on graphenic nanostructures such as ribbons and nanotubes.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Tomás Alonso-Lanza, Andrés Ayuela, Faustino Aguilera-Granja. 2015-12-24. Chemical Bonding of Transition-metal Co$_{13}$ Clusters with Graphene. https://doi.org/10.1002/cphc.201500692
Cite the original work for its findings. Save a collection to share your selection of sources.