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Accessing the structural and thermodynamic properties of ultra-thin layers of C32 adsorbed on a SiO2 surface

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Abstract Medium-chain alkanes are important molecules with applications in biology and industry. Notably, their structural properties are scarcely understood. To assess structural and thermodynamic properties of dotriacontane (C32) molecules adsorbed… Click to show full abstract

Abstract Medium-chain alkanes are important molecules with applications in biology and industry. Notably, their structural properties are scarcely understood. To assess structural and thermodynamic properties of dotriacontane (C32) molecules adsorbed on a SiO2 surface, we conducted all-atom molecular dynamics (MD) simulations. By analyzing potentials of mean force, order parameters and self-diffusion, we compared the stability and preferential orientation between ordered and disordered systems. Our data confirm the presence of one parallel layer of C32 followed by a mixture of disordered C32 segments exhibiting no thermodynamic preference. This semi-ordered structural model shed light to the interactions between C32 and a SiO2 surface.

Keywords: thermodynamic properties; accessing structural; surface; sio2 surface; structural thermodynamic; adsorbed sio2

Journal Title: Chemical Physics Letters
Year Published: 2017

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