Anharmonic magnetic deformation of self-assembled molecular nanocapsules

High magnetic fields were used to deform spherical nanocapsules, self-assembled from bolaamphiphilic sexithiophene molecules. At low fields the deformation--measured through linear birefringence-scales quadratically with the capsule radius and with the magnetic field strength. These data confirm a l...

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Veröffentlicht in:Physical review letters 2007-04, Vol.98 (14), p.146101-146101, Article 146101
Hauptverfasser: Manyuhina, O V, Shklyarevskiy, I O, Jonkheijm, P, Christianen, P C M, Fasolino, A, Katsnelson, M I, Schenning, A P H J, Meijer, E W, Henze, O, Kilbinger, A F M, Feast, W J, Maan, J C
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Sprache:eng
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Zusammenfassung:High magnetic fields were used to deform spherical nanocapsules, self-assembled from bolaamphiphilic sexithiophene molecules. At low fields the deformation--measured through linear birefringence-scales quadratically with the capsule radius and with the magnetic field strength. These data confirm a long standing theoretical prediction [W. Helfrich, Phys. Lett. A 43, 409 (1973)10.1016/0375-9601(73)90396-4], and permit the determination of the bending rigidity of the capsules as (2.6+/-0.8) x 10(-21) J. At high fields, an enhanced rigidity is found which cannot be explained within the Helfrich model. We propose a complete form of the free energy functional that accounts for this behavior, and allows discussion of the formation and stability of nanocapsules in solution.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.98.146101