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1.
Phys Rev Lett ; 105(5): 058301, 2010 Jul 30.
Article in English | MEDLINE | ID: mdl-20867956

ABSTRACT

The mechanical response to compression of a self-assembled gold nanoparticle monolayer and trilayer at the air-liquid interface is examined. Analysis of the film's buckling morphology under compression reveals an anomalously low bending rigidity for both the monolayer and the trilayer, in contrast with continuum elastic plates. We attribute this to the spherical geometry of the nanoparticles and poor coupling between layers, respectively. The elastic energy of the trilayers is first delocalized in wrinkles and then localized into folds, as predicted by linear and nonlinear elastic theory for an inextensible thin film supported on a fluid.


Subject(s)
Gold/chemistry , Metal Nanoparticles/chemistry , Air , Compressive Strength , Elasticity , Metal Nanoparticles/ultrastructure , Microscopy, Atomic Force , Surface Properties , Thermodynamics
2.
J Phys Chem B ; 110(48): 24522-9, 2006 Dec 07.
Article in English | MEDLINE | ID: mdl-17134211

ABSTRACT

The assembly of nanoparticles into large, two-dimensional structures provides a route for the exploration of collective phenomena among mesoscopic building blocks. We characterize the structure of Langmuir monolayers of dodecanethiol-ligated gold nanoparticles with in situ optical microscopy and X-ray scattering. The interparticle spacing increases with thiol concentration and does not depend on surface pressure. The correlation lengths of the Langmuir monolayer crystalline domains are on the order of five to six particle diameters. Further compression of the monolayers causes wrinkling; however, we find that wrinkled monolayers with excess thiol can relax to an unwrinkled state following a reduction of surface pressure. A theoretical model based on van der Waals attraction and tunable steric repulsion is adopted to explain this reversibility.

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