Article (Scientific journals)
Two-Leg Molecular Ladders Formed by Hierarchical Self-Assembly of an Organic Radical
Crivillers, N.; Furukawa, S.; Minoia, A. et al.
2009In Journal of the American Chemical Society, 131 (17), p. 6246-6252
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Abstract :
[en] The supramolecular organization of a new polychlorotriphenyl (PTM) radical bearing three long alkyl chains has been studied by scanning tunneling microscopy (STM) at the liquid-solid interface. This radical hierarchically self-assembles on graphite forming head-to-head dimers that organize in rows following an interesting spin-containing two-leg molecular ladder topology, in which the alkyl chains determine the space between the radical rows and act as diamagnetic barriers. In addition, these double-rows also self-assemble three-dimensionally, leading to a multilayer organization which is still influenced by the HOPG substrate symmetry. The observed nanostructures are sustained by different intermolecular interactions such as Cl···Cl, Cl···Ph, p-p, van der Waals, and CH···p interactions. Theoretical calculations were used to model the observed assemblies, and the results were in complete agreement with the experimental data. Remarkably, atomic force microscopy (AFM) studies confirmed that this tendency to form double rows composed by the PTM magnetic heads surrounded by the alkyl chains is maintained after the complete evaporation of the solvent. The electrochemical and magnetic properties of these PTM nanostructures were also demonstrated.
Disciplines :
Chemistry
Physics
Author, co-author :
Crivillers, N.
Furukawa, S.
Minoia, A.
Ver Heyen, A.
Mas-Torrent, M.
Sporer, C.
Linares, M.
Volodin, A.
Van Haesendonck, C.
Van Der Auweraer, M.
Lazzaroni, Roberto ;  Université de Mons > Faculté des Sciences > Service de Chimie des matériaux nouveaux
De Feyter, S.
Veciana, J.
Rovira, C.
More authors (4 more) Less
Language :
English
Title :
Two-Leg Molecular Ladders Formed by Hierarchical Self-Assembly of an Organic Radical
Publication date :
06 May 2009
Journal title :
Journal of the American Chemical Society
ISSN :
0002-7863
Publisher :
American Chemical Society, United States - District of Columbia
Volume :
131
Issue :
17
Pages :
6246-6252
Peer reviewed :
Peer Reviewed verified by ORBi
Research unit :
S817 - Chimie des matériaux nouveaux
Research institute :
R400 - Institut de Recherche en Science et Ingénierie des Matériaux
Commentary :
Publié en ligne le 10 avril 2009
Available on ORBi UMONS :
since 10 June 2010

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