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Two-dimensional separation of [7]helicene enantiomers on Cu(111)
Ernst, K. H., Kuster, Y., Fasel, R., Müller, M., & Ellerbeck, U. (2001). Two-dimensional separation of [7]helicene enantiomers on Cu(111). Chirality, 13(10), 675-678. https://doi.org/10.1002/chir.10006
Coexisting inequivalent orientations of C<sub>60</sub> on Ag(001)
Cepek, C., Fasel, R., Sancrotti, M., Greber, T., & Osterwalder, J. (2001). Coexisting inequivalent orientations of C60 on Ag(001). Physical Review B, 63(12), 125406 (5 pp.). https://doi.org/10.1103/PhysRevB.63.125406
Binding and ordering of C<sub>60</sub> on Pd(110): Investigations at the local and mesoscopic scale
Weckesser, J., Cepek, C., Fasel, R., Barth, J. V., Baumberger, F., Greber, T., & Kern, K. (2001). Binding and ordering of C60 on Pd(110): Investigations at the local and mesoscopic scale. Journal of Chemical Physics, 115(19), 9001-9009. https://doi.org/10.1063/1.1410391
Anisotropy of quasiparticle lifetimes and the role of disorder in graphite from ultrafast time-resolved photoemission spectroscopy
Moos, G., Gahl, C., Fasel, R., Wolf, M., & Hertel, T. (2001). Anisotropy of quasiparticle lifetimes and the role of disorder in graphite from ultrafast time-resolved photoemission spectroscopy. Physical Review Letters, 87(26), 267402 (4 pp.). https://doi.org/10.1103/PhysRevLett.87.267402
Orientation of chiral heptahelicene C<sub>30</sub>H<sub>18</sub> on copper surfaces: an x-ray photoelectron diffraction study
Fasel, R., Cossy, A., Ernst, K. H., Baumberger, F., Greber, T., & Osterwalder, J. (2001). Orientation of chiral heptahelicene C30H18 on copper surfaces: an x-ray photoelectron diffraction study. Journal of Chemical Physics, 115(2), 1020-1027. https://doi.org/10.1063/1.1377886
X-ray photoelectron diffraction: probing atom positions and molecular orientation at surfaces
Fasel, R., & Aebi, P. (2002). X-ray photoelectron diffraction: probing atom positions and molecular orientation at surfaces. Chimia, 56(10), 566-572. https://doi.org/10.2533/000942902777680135
Charge-carrier dynamics in single-wall carbon nanotube bundles: a time-domain study
Hertel, T., Fasel, R., & Moos, G. (2002). Charge-carrier dynamics in single-wall carbon nanotube bundles: a time-domain study. Applied Physics A: Materials Science and Processing, 75(4), 449-465. https://doi.org/10.1007/s003390201415
Temperature dependence of electron-to-lattice energy transfer in single-wall carbon nanotube bundles
Moos, G., Fasel, R., & Hertel, T. (2003). Temperature dependence of electron-to-lattice energy transfer in single-wall carbon nanotube bundles. Journal of Nanoscience and Nanotechnology, 3(1-2), 145-149. https://doi.org/10.1166/jnn.2003.163
Adsorption of helical aromatic molecules: heptahelicene on Ni(1 1 1)
Ernst, K. H., Kuster, Y., Fasel, R., McFadden, C. F., & Ellerbeck, U. (2003). Adsorption of helical aromatic molecules: heptahelicene on Ni(1 1 1). Surface Science, 530(3), 195-202. https://doi.org/10.1016/S0039-6028(03)00489-8
Scanning tunneling microscopy and x-ray photoelectron diffraction investigation of C<sub>60</sub> films on Cu(100)
Abel, M., Dmitriev, A., Fasel, R., Lin, N., Barth, J. V., & Kern, K. (2003). Scanning tunneling microscopy and x-ray photoelectron diffraction investigation of C60 films on Cu(100). Physical Review B, 67(24), 245407 (7 pp.). https://doi.org/10.1103/PhysRevB.67.245407
Chirality transfer from single molecules into self-assembled monolayers
Fasel, R., Parschau, M., & Ernst, K. H. (2003). Chirality transfer from single molecules into self-assembled monolayers. Angewandte Chemie International Edition, 42(42), 5178-5181. https://doi.org/10.1002/anie.200352232
Exploring the mechanism of molecular chirality transfer via STM
Fasel, R., Parschau, M., & Ernst, K. H. (2004). Exploring the mechanism of molecular chirality transfer via STM. Pico: Omicron NanoScience Newsletter, 8(1), 4-5.
Differences in two-dimensional crystal structures: racemic and enantiopure heptahelicene on Cu(111)
Ernst, K. H., Parschau, M., & Fasel, R. (2004). Differences in two-dimensional crystal structures: racemic and enantiopure heptahelicene on Cu(111). e-Journal of Surface Science and Nanotechnology, 2, 136-140. https://doi.org/10.1380/ejssnt.2004.136
Mg(0001) surface oxidation: A two-dimensional oxide phase
Schröder, E., Fasel, R., & Kiejna, A. (2004). Mg(0001) surface oxidation: A two-dimensional oxide phase. Physical Review B, 69(19), 193405 (4 pp.). https://doi.org/10.1103/PhysRevB.69.193405
Bestimmung der absoluten Konfiguration adsorbierter Moleküle
Fasel, R., Wider, J., Quitmann, C., Ernst, K. H., & Greber, T. (2004). Bestimmung der absoluten Konfiguration adsorbierter Moleküle. Angewandte Chemie, 116(21), 2913-2917. https://doi.org/10.1002/ange.200353311
O adsorption and incipient oxidation of the Mg(0001) surface
Schröder, E., Fasel, R., & Kiejna, A. (2004). O adsorption and incipient oxidation of the Mg(0001) surface. Physical Review B, 69(11), 115431 (8 pp.). https://doi.org/10.1103/PhysRevB.69.115431
Chiral recognition in surface explosion
Behzadi, B., Romer, S., Fasel, R., & Ernst, K. H. (2004). Chiral recognition in surface explosion. Journal of the American Chemical Society, 126(30), 9176-9177. https://doi.org/10.1021/ja048206d
Determination of the absolute chirality of adsorbed molecules
Fasel, R., Wider, J., Quitmann, C., Ernst, K. H., & Greber, T. (2004). Determination of the absolute chirality of adsorbed molecules. Angewandte Chemie International Edition, 43(21), 2853-2856. https://doi.org/10.1002/anie.200353311
Formation of Al<sub>4</sub>Cu<sub>9</sub> on the 5 fold surface of icosahedral AlPdMn
Bielmann, M., Barranco, A., Ruffieux, P., Gröning, O., Fasel, R., Widmer, R., & Gröning, P. (2005). Formation of Al4Cu9 on the 5 fold surface of icosahedral AlPdMn. Advanced Engineering Materials, 7(5), 392-396. https://doi.org/10.1002/adem.200500050
Doping-induced reorientation of C<sub>60</sub> molecules on Ag(111)
Tamai, A., Seitsonen, A. P., Fasel, R., Shen, Z. X., Osterwalder, J., & Greber, T. (2005). Doping-induced reorientation of C60 molecules on Ag(111). Physical Review B, 72(8), 085421 (5 pp.). https://doi.org/10.1103/PhysRevB.72.085421
 

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