BOLAT, Rustem, GUEVARA PARRA, Jose Maria, LEINEN, Philipp, KNOL, Marvin, AREFI, Hadi H., MAIWORM, Michael, FINDEISEN, Rolf, TEMIROV, Ruslan, HOFMANN, Oliver T., MAURER, Reinhard J., TAUTZ, F. Stefan und WAGNER, Christian, 2024. Electrostatic potentials of atomic nanostructures at metal surfaces quantified by scanning quantum dot microscopy. Nature Communications. 2024. No. Band 15 (2024), Artikel-ID: 2259, p. , Artikel-ID: 2259. DOI 10.1038/s41467-024-46423-4.
Elsevier - Harvard (with titles)Bolat, R., Guevara Parra, J.M., Leinen, P., Knol, M., Arefi, H.H., Maiworm, M., Findeisen, R., Temirov, R., Hofmann, O.T., Maurer, R.J., Tautz, F.S., Wagner, C., 2024. Electrostatic potentials of atomic nanostructures at metal surfaces quantified by scanning quantum dot microscopy. Nature Communications , Artikel-ID: 2259. https://doi.org/10.1038/s41467-024-46423-4
American Psychological Association 7th editionBolat, R., Guevara Parra, J. M., Leinen, P., Knol, M., Arefi, H. H., Maiworm, M., Findeisen, R., Temirov, R., Hofmann, O. T., Maurer, R. J., Tautz, F. S., & Wagner, C. (ca. 2024). Electrostatic potentials of atomic nanostructures at metal surfaces quantified by scanning quantum dot microscopy [Electronic]. Nature Communications, Band 15 (2024), Artikel-ID: 2259, , Artikel-ID: 2259. https://doi.org/10.1038/s41467-024-46423-4
Springer - Basic (author-date)Bolat R, Guevara Parra JM, Leinen P, Knol M, Arefi HH, Maiworm M, Findeisen R, Temirov R, Hofmann OT, Maurer RJ, Tautz FS, Wagner C (2024) Electrostatic potentials of atomic nanostructures at metal surfaces quantified by scanning quantum dot microscopy. Nature Communications , Artikel-ID: 2259. https://doi.org/10.1038/s41467-024-46423-4
Juristische Zitierweise (Stüber) (Deutsch)Bolat, Rustem/ Guevara Parra, Jose Maria/ Leinen, Philipp/ Knol, Marvin/ Arefi, Hadi H./ Maiworm, Michael/ Findeisen, Rolf/ Temirov, Ruslan/ Hofmann, Oliver T./ Maurer, Reinhard J./ Tautz, F. Stefan/ Wagner, Christian, Electrostatic potentials of atomic nanostructures at metal surfaces quantified by scanning quantum dot microscopy, Nature Communications 2024, , Artikel-ID: 2259.