Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Leif Lafferentz"'
Autor:
Christian Joachim, Francisco Ample, Christian Bombis, Leif Lafferentz, Stefan Hecht, Leonhard Grill, Hao Yu
Publikováno v:
Angewandte Chemie International Edition. 48:9966-9970
Autor:
Hao Yu, Leif Lafferentz, Christian Joachim, Stefan Hecht, Christian Bombis, Francisco Ample, Leonhard Grill
Publikováno v:
Angewandte Chemie. 121:10151-10155
Publikováno v:
Science. 323:1193-1197
The development of electronic devices at the single-molecule scale requires detailed understanding of charge transport through individual molecular wires. To characterize the electrical conductance, it is necessary to vary the length of a single mole
Autor:
Maike V. Peters, Stefan Hecht, Matthew S. Dyer, Mats Persson, Leonhard Grill, Leif Lafferentz
Publikováno v:
Nature Nanotechnology. 2:687-691
The construction of electronic devices from single molecular building blocks, which possess certain functions such as switching or rectifying and are connected by atomic-scale wires on a supporting surface, is an essential goal of molecular electroni
Autor:
Leif Lafferentz, Lorenzo Massimi, Deborah Prezzi, Maria Grazia Betti, Oualid Ourdjini, Andrea Ferretti, Leonhard Grill, Matthias Koch, Emanuele Cavaliere, Claudia Cardoso, Elisa Molinari, Carlo Mariani, Luca Gavioli
Publikováno v:
Journal of physical chemistry. C 119 (2015): 2427–2437. doi:10.1021/jp509415r
info:cnr-pdr/source/autori:Massimi L.; Ourdjini O.; Lafferentz L.; Koch M. E.; Grill L.; Cavaliere E.; Gavioli L.; Cardoso C.; Prezzi D.; Molinari E.; Ferretti A.; Mariani C.; Betti M.G./titolo:Surface-assisted reactions toward formation of graphene nanoribbons on Au(110) surface/doi:10.1021%2Fjp509415r/rivista:Journal of physical chemistry. C/anno:2015/pagina_da:2427/pagina_a:2437/intervallo_pagine:2427–2437/volume:119
ResearcherID
info:cnr-pdr/source/autori:Massimi L.; Ourdjini O.; Lafferentz L.; Koch M. E.; Grill L.; Cavaliere E.; Gavioli L.; Cardoso C.; Prezzi D.; Molinari E.; Ferretti A.; Mariani C.; Betti M.G./titolo:Surface-assisted reactions toward formation of graphene nanoribbons on Au(110) surface/doi:10.1021%2Fjp509415r/rivista:Journal of physical chemistry. C/anno:2015/pagina_da:2427/pagina_a:2437/intervallo_pagine:2427–2437/volume:119
ResearcherID
Scanning tunneling microscopy and X-ray spectroscopy measurements are combined to first-principles simulations to investigate the formation of graphene nanoribbons (GNRs) on Au(110), as based on the surface-mediated reaction of 10,10?-dibromo-9,9?-bi
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::0abf55a47749df6c564ca67d132892c0
Autor:
Stefan Hecht, Carlo Dri, Volker Eberhardt, Cristina Africh, Leonhard Grill, Friedrich Esch, Giovanni Comelli, Leif Lafferentz
Publikováno v:
Nature Chemistry
Nature chemistry
4 (2012): 215–220. doi:10.1038/NCHEM.1242
info:cnr-pdr/source/autori:Lafferentz, L (1,3); Eberhardt, V (2); Dri, C (3); Africh, C (3); Comelli, G (3,4); Esch, F (3,5); Hecht, S (2); Grill, L (1)/titolo:Controlling on-surface polymerization by hierarchical and substrate-directed growth/doi:10.1038%2FNCHEM.1242/rivista:Nature chemistry (Print)/anno:2012/pagina_da:215/pagina_a:220/intervallo_pagine:215–220/volume:4
Nature chemistry
4 (2012): 215–220. doi:10.1038/NCHEM.1242
info:cnr-pdr/source/autori:Lafferentz, L (1,3); Eberhardt, V (2); Dri, C (3); Africh, C (3); Comelli, G (3,4); Esch, F (3,5); Hecht, S (2); Grill, L (1)/titolo:Controlling on-surface polymerization by hierarchical and substrate-directed growth/doi:10.1038%2FNCHEM.1242/rivista:Nature chemistry (Print)/anno:2012/pagina_da:215/pagina_a:220/intervallo_pagine:215–220/volume:4
A key challenge in the field of nanotechnology, in particular in the design of molecular machines, novel materials or molecular electronics, is the bottom-up construction of covalently bound molecular architectures in a well-defined arrangement. To d
Autor:
Leonhard Grill, Leif Lafferentz
Publikováno v:
Physik in unserer Zeit. 40:172-173
Molekulare “Drahte” aus einem einzigen linearen Molekul besitzen ein enormes Potenzial fur zukunftige Anwendungen in der Nanotechnologie. Dabei stellt der Ladungstransport ein entscheidendes Kriterium fur ihre Verwendung in dieser molekularen Ele