Large-periodicity two-dimensional crystals by cocrystallization.

Katherine E Plass, Keary M Engle, Katie A Cychosz, Adam J Matzger
Author Information
  1. Katherine E Plass: Chemistry Department and Macromolecular Science and Engineering Program, University of Michigan, 930 North University, Ann Arbor, Michigan 48109, USA.

Abstract

Patterning surfaces with features on the low end of the nanoscale can efficiently be accomplished with physisorbed monolayers. Here, cocrystallization is revealed as a powerful approach toward dramatically increasing the periodicity of surface features and expanding the length scale on which these patterns can form. By variation of the ratio of adsorbates in solution, surface composition can be controlled such that features on the length scale of several molecules are obtained, offering a facile approach to surface nanopatterning.

MeSH Term

Computer Simulation
Crystallization
Macromolecular Substances
Materials Testing
Models, Chemical
Models, Molecular
Molecular Conformation
Nanostructures
Periodicity

Chemicals

Macromolecular Substances

Word Cloud

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