Melting mechanism in monolayers of flexible rod-shaped molecules

No Thumbnail Available

Meeting name

Sponsors

Date

Journal Title

Format

Article

Subject

Research Projects

Organizational Units

Journal Issue

Abstract

The melting of butane and hexane monolayers adsorbed on a graphite basal-plane surface has been studied by molecular-dynamics simulations and experimentally by neutron diffraction. The simulation results are qualitatively consistent with the observed diffraction patterns and suggest a general mechanism for melting in monolayers of flexible rod-shaped molecules. Melting requires the formation of vacancies in the monolayer by molecular motion perpendicular to the surface. This ''footprint reduction'' mechanism implies that strictly two-dimensional theories of melting are inapplicable to these systems.

Table of Contents

DOI

PubMed ID

Degree

Thesis Department

Rights

License