Ortho and para hydrogen dimers on G/SiC(0001): combined STM and DFT study.
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P Merino | P. Jelínek | J. Martín-Gago | P. Merino | P. D. de Andres | M Švec | J I Martínez | P Mutombo | C Gonzalez | J A Martín-Gago | P L de Andres | P Jelinek | M. Švec | P. Mutombo | C. González | J. Martínez
[1] G. Vidali. H2 formation on interstellar grains. , 2013, Chemical reviews.
[2] J. Vergés,et al. First-principles calculation of the effect of stress on the chemical activity of graphene , 2008, 0907.3806.
[3] J. Crain,et al. Imaging the interface of epitaxial graphene with silicon carbide via scanning tunneling microscopy , 2007, 0711.2523.
[4] M. Bode,et al. Patterning graphene at the nanometer scale via hydrogen desorption. , 2009, Nano letters.
[5] C. Berger,et al. Electronic Confinement and Coherence in Patterned Epitaxial Graphene , 2006, Science.
[6] Michael Huth,et al. Suppression of martensitic phase transition at the Ni2MnGa film surface , 2008 .
[7] P. Jelínek,et al. Achieving high-quality single-atom nitrogen doping of graphene/SiC(0001) by ion implantation and subsequent thermal stabilization. , 2014, ACS nano.
[8] U. Waghmare,et al. Chemical storage of hydrogen in few-layer graphene , 2011, Proceedings of the National Academy of Sciences.
[9] P. Jelínek,et al. Van der Waals interactions mediating the cohesion of fullerenes on graphene , 2012 .
[10] Y. Ferro,et al. Stability and magnetism of hydrogen dimers on graphene , 2008 .
[11] G. Barber,et al. Graphane: a two-dimensional hydrocarbon , 2006, cond-mat/0606704.
[12] J. Fabian,et al. Spin-orbit coupling in hydrogenated graphene. , 2013, Physical review letters.
[13] P Merino,et al. Graphene etching on SiC grains as a path to interstellar polycyclic aromatic hydrocarbons formation , 2014, Nature Communications.
[14] B. Hammer,et al. Controlling hydrogenation of graphene on Ir(111). , 2013, ACS nano.
[15] B. Roux,et al. Comment on "Free energy simulations of single and double ion occupancy in gramicidin A" [J. Chem. Phys. 126, 105103 (2007)]. , 2008, The Journal of chemical physics.
[16] Ž. Šljivančanin,et al. Extended atomic hydrogen dimer configurations on the graphite(0001) surface. , 2009, The Journal of chemical physics.
[17] A. Bauer,et al. Lattice Parameter Measurements of 3C-SiC Thin Films Grown on 6H-SiC(0001) Substrate Crystals , 2001 .
[18] Matthias Scheffler,et al. Thermodynamic equilibrium conditions of graphene films on SiC. , 2013, Physical review letters.
[19] B. Hammer,et al. Clustering of chemisorbed H(D) atoms on the graphite (0001) surface due to preferential sticking. , 2006, Physical review letters.
[20] Ole Martin Løvvik,et al. Understanding adsorption of hydrogen atoms on graphene. , 2008, The Journal of chemical physics.
[21] Structural properties of the multilayer graphene/4H-SiC(0001) system as determined by surface x-ray diffraction , 2007, cond-mat/0702540.
[22] C. Berger,et al. Ultrathin epitaxial graphite: 2D electron gas properties and a route toward graphene-based nanoelectronics. , 2004, cond-mat/0410240.
[23] C. Coletti,et al. Structural and electronic properties of epitaxial graphene on SiC(0 0 0 1): a review of growth, characterization, transfer doping and hydrogen intercalation , 2010 .
[24] T. Lamberts,et al. The Kinetic Monte Carlo Method as a Way To Solve the Master Equation for Interstellar Grain Chemistry , 2013, Chemical reviews.
[25] D. Wales,et al. Hydrogen on Graphene Under Stress: Molecular Dissociation and Gap Opening , 2010, 1106.0385.
[26] J.-M. Themlin,et al. HETEROEPITAXIAL GRAPHITE ON 6H-SIC(0001): INTERFACE FORMATION THROUGH CONDUCTION-BAND ELECTRONIC STRUCTURE , 1998 .
[27] M. Gearing,et al. Correction: Corrigendum: Tonic inhibition in dentate gyrus impairs long-term potentiation and memory in an Alzheimer’s disease model , 2014, Nature Communications.
[28] Hong Liang Zhang,et al. Probing the interaction at the C60–SiC nanomesh interface , 2007 .
[29] B. Hammer,et al. Bandgap opening in graphene induced by patterned hydrogen adsorption. , 2010, Nature materials.
[30] K. Novoselov,et al. Control of Graphene's Properties by Reversible Hydrogenation: Evidence for Graphane , 2008, Science.
[32] F. Besenbacher,et al. Atomic hydrogen adsorbate structures on graphene. , 2009, Journal of the American Chemical Society.
[33] B. Hammer,et al. Metastable structures and recombination pathways for atomic hydrogen on the graphite (0001) surface. , 2006, Physical review letters.
[34] E. Lægsgaard,et al. Long range orientation of meta-stable atomic hydrogen adsorbate clusters on the graphite(0 0 0 1) surface , 2007 .
[35] L. Hornekaer,et al. Kinetic Monte Carlo studies of hydrogen abstraction from graphite. , 2008, The Journal of chemical physics.
[36] M Weinert,et al. Epitaxial graphene on SiC(0001): more than just honeycombs. , 2010, Physical review letters.
[37] J. Crain,et al. Scattering and Interference in Epitaxial Graphene , 2007, Science.
[38] S. Ulstrup,et al. Electronic structure of graphene on a reconstructed Pt(100) surface: Hydrogen adsorption, doping, and band gaps , 2013 .
[39] Seungwu Han,et al. First-principles study of preferential sites of hydrogen incorporated in epitaxial graphene on 6H-SiC(0001) , 2010 .
[40] First-principles study of preferential sites of hydrogen incorporated in epitaxial graphene on 6 H-SiC ( 0001 ) , 2010 .
[41] J. Crain,et al. Exposure of epitaxial graphene on SiC(0001) to atomic hydrogen. , 2008, Nano letters.
[42] C. Coletti,et al. Quasi-free-standing epitaxial graphene on SiC obtained by hydrogen intercalation. , 2009, Physical review letters.