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(2 × 1)-Na surface reconstruction induced by NaCl dissociation on Ag(1 1 0) during LEED analysis
Aït-Mansour, K., Bielmann, M., Gröning, O., Ruffieux, P., Fasel, R., & Gröning, P. (2006). (2 × 1)-Na surface reconstruction induced by NaCl dissociation on Ag(1 1 0) during LEED analysis. Applied Surface Science, 252(18), 6368-6374. https://doi.org/10.1016/j.apsusc.2005.10.046
A simple approach for describing metal-supported cyclohexaphenylene dehydrogenation.: Hybrid classical/DFT metadynamics simulations
Pignedoli, C. A., Laino, T., Treier, M., Fasel, R., & Passerone, D. (2010). A simple approach for describing metal-supported cyclohexaphenylene dehydrogenation.: Hybrid classical/DFT metadynamics simulations. European Physical Journal B: Condensed Matter and Complex Systems, 75(1), 65-70. https://doi.org/10.1140/epjb/e2010-00038-1
Amplification of chirality in two-dimensional enantiomorphous lattices
Fasel, R., Parschau, M., & Ernst, K. H. (2006). Amplification of chirality in two-dimensional enantiomorphous lattices. Nature, 439(7075), 449-452. https://doi.org/10.1038/nature04419
An aromatic coupling motif for two-dimensional supramolecular architectures
Treier, M., Ruffieux, P., Gröning, P., Xiao, S., Nuckolls, C., & Fasel, R. (2008). An aromatic coupling motif for two-dimensional supramolecular architectures. Chemical Communications, (38), 4555-4557. https://doi.org/10.1039/b809618j
Atomically precise bottom-up fabrication of graphene nanoribbons
Cai, J., Ruffieux, P., Jaafar, R., Bieri, M., Braun, T., Blankenburg, S., … Fasel, R. (2010). Atomically precise bottom-up fabrication of graphene nanoribbons. Nature, 466(7305), 470-473. https://doi.org/10.1038/nature09211
Atomistic insight into the adsorption site selectivity of stepped Au(111) surfaces
Gaspari, R., Pignedoli, C. A., Fasel, R., Treier, M., & Passerone, D. (2010). Atomistic insight into the adsorption site selectivity of stepped Au(111) surfaces. Physical Review B, 82(4), 041408 (4 pp.). https://doi.org/10.1103/PhysRevB.82.041408
Band gap of atomically precise graphene nanoribbons as a function of ribbon length and termination
Talirz, L., Söde, H., Kawai, S., Ruffieux, P., Meyer, E., Feng, X., … Passerone, D. (2019). Band gap of atomically precise graphene nanoribbons as a function of ribbon length and termination. ChemPhysChem, 20(18), 2348-2353. https://doi.org/10.1002/cphc.201900313
Buckybows on metal surfaces: symmetry mismatch and enantiomorphism of corannulen an Cu(110)
Parschau, M., Fasel, R., Ernst, K. H., Gröning, O., Brandenberger, L., Schillinger, R., … Siegel, J. S. (2007). Buckybows on metal surfaces: symmetry mismatch and enantiomorphism of corannulen an Cu(110). Angewandte Chemie International Edition, 46(43), 8258-8261. https://doi.org/10.1002/anie.200700610
Building pentagons into graphenic structures by on-surface polymerization and aromatic cyclodehydrogenation of phenyl-substituted polycyclic aromatic hydrocarbons
Liu, J., Dienel, T., Liu, J., Groening, O., Cai, J., Feng, X., … Fasel, R. (2016). Building pentagons into graphenic structures by on-surface polymerization and aromatic cyclodehydrogenation of phenyl-substituted polycyclic aromatic hydrocarbons. Journal of Physical Chemistry C, 120(31), 17588-17593. https://doi.org/10.1021/acs.jpcc.6b05495
C<SUB>60</SUB> on strain-relief patterns of Ag/Pt (111): film orientation governed by template superstructure
Aït-Mansour, K., Ruffieux, P., Xiao, W., Gröning, P., Fasel, R., & Gröning, O. (2006). C60 on strain-relief patterns of Ag/Pt (111): film orientation governed by template superstructure. Physical Review B, 74(19), 195418 (8 pp.). https://doi.org/10.1103/PhysRevB.74.195418
Chiral biphenyldicarboxylic acid networks stabilized by hydrogen bonding
Xiao, W. D., Jiang, Y. H., Aït-Mansour, K., Ruffieux, P., Gao, H. J., & Fasel, R. (2010). Chiral biphenyldicarboxylic acid networks stabilized by hydrogen bonding. Journal of Physical Chemistry C, 114(14), 6646-6649. https://doi.org/10.1021/jp100701y
Coexistence of one- and two-dimensional supramolecular assemblies of terephthalic acid on Pd(111) due to self-limiting deprotonation
Cañas-Ventura, M. E., Klappenberger, F., Clair, S., Pons, S., Kern, K., Brune, H., … Barth, J. V. (2006). Coexistence of one- and two-dimensional supramolecular assemblies of terephthalic acid on Pd(111) due to self-limiting deprotonation. Journal of Chemical Physics, 125(18), 184710 (8 pp.). https://doi.org/10.1063/1.2364478
Collective all‐carbon magnetism in triangulene dimers
Mishra, S., Beyer, D., Eimre, K., Ortiz, R., Fernández-Rossier, J., Berger, R., … Ruffieux, P. (2020). Collective all‐carbon magnetism in triangulene dimers. Angewandte Chemie International Edition. https://doi.org/10.1002/anie.202002687
Combinatorial design of molecular seeds for chirality-controlled synthesis of single-walled carbon nanotubes
Tomada, J., Dienel, T., Hampel, F., Fasel, R., & Amsharov, K. (2019). Combinatorial design of molecular seeds for chirality-controlled synthesis of single-walled carbon nanotubes. Nature Communications, 10(1), 3278 (10 pp.). https://doi.org/10.1038/s41467-019-11192-y
Controlled synthesis of single-chirality carbon nanotubes
Sanchez-Valencia, J. R., Dienel, T., Gröning, O., Shorubalko, I., Mueller, A., Jansen, M., … Fasel, R. (2014). Controlled synthesis of single-chirality carbon nanotubes. Nature, 512, 61-64. https://doi.org/10.1038/nature13607
Coverage and enantiomeric excess dependent enantiomorphism in two-dimensional molecular crystals
Parschau, M., Fasel, R., & Ernst, K. H. (2008). Coverage and enantiomeric excess dependent enantiomorphism in two-dimensional molecular crystals. Crystal Growth and Design, 8(6), 1890-1896. https://doi.org/10.1021/cg701100r
Cyclotrimerization of arylalkynes on Au(111)
Liu, J., Ruffieux, P., Feng, X., Müllen, K., & Fasel, R. (2014). Cyclotrimerization of arylalkynes on Au(111). Chemical Communications, 50(76), 11200-11203. https://doi.org/10.1039/C4CC02859G
Electronic band dispersion of graphene nanoribbons via Fourier-transformed scanning tunneling spectroscopy
Söde, H., Talirz, L., Gröning, O., Pignedoli, C. A., Berger, R., Feng, X., … Ruffieux, P. (2015). Electronic band dispersion of graphene nanoribbons via Fourier-transformed scanning tunneling spectroscopy. Physical Review B, 91(4), 045429 (6 pp.). https://doi.org/10.1103/PhysRevB.91.045429
Electronic characterization of silicon intercalated chevron graphene nanoribbons on Au(111)
Deniz, O., Sánchez-Sánchez, C., Jaafar, R., Kharche, N., Liang, L., Meunier, V., … Ruffieux, P. (2018). Electronic characterization of silicon intercalated chevron graphene nanoribbons on Au(111). Chemical Communications, 54(13), 1619-1622. https://doi.org/10.1039/C7CC08353J
Engineering of robust topological quantum phases in graphene nanoribbons
Gröning, O., Wang, S., Yao, X., Pignedoli, C. A., Borin Barin, G., Daniels, C., … Fasel, R. (2018). Engineering of robust topological quantum phases in graphene nanoribbons. Nature, 560(7717), 209-213. https://doi.org/10.1038/s41586-018-0375-9
 

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