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      Spectroscopy of PTCDA attached to rare gas samples: clusters vs. bulk matrices. I. Absorption spectroscopy

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          Abstract

          The interaction between PTCDA (3,4,9,10-perylene-tetracarboxylic-dianhydride) and rare gas or para-hydrogen samples is studied by means of laser-induced fluorescence excitation spectroscopy. The comparison between spectra of PTCDA embedded in a neon matrix and spectra attached to large neon clusters shows that these large organic molecules reside on the surface of the clusters when doped by the pick-up technique. PTCDA molecules can adopt different conformations when attached to argon, neon and para-hydrogen clusters which implies that the surface of such clusters has a well-defined structure and has not liquid or fluxional properties. Moreover, a precise analysis of the doping process of these clusters reveals that the mobility of large molecules on the cluster surface is quenched, preventing agglomeration and complex formation.

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          Molecular level alignment at organic semiconductor-metal interfaces

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            Rigid-Fluid Transition in Specific-Size Argon Clusters

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              Interplay between Magic Number Stabilities and Superfluidity of Small Parahydrogen Clusters

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                Author and article information

                Journal
                13 June 2012
                Article
                10.1063/1.4759443
                1206.2783
                219ecf56-8a85-4c3c-a4b4-bf1c6e336730

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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                physics.atm-clus

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