Shape Allophiles Improve Entropic Assembly

ORAL

Abstract

We investigate a class of ``shape allophiles'' that fit together like puzzle pieces as a method to access and stabilize desired structures by controlling directional entropic forces. Squares are cut into rectangular halves, which are shaped in an allophilic manner with the goal of re-assembling the squares while self-assembling the square lattice. We examine the assembly characteristics of this system via the potential of mean force and torque, and the fraction of particles that entropically bind. We generalize our findings and apply them to self-assemble triangles into a square lattice via allophilic shaping. Through these studies we show how shape allophiles can be useful in assembling and stabilizing desired phases with appropriate allophilic design. [1] Harper, et. al., Soft Matter, 2015, 11, 7250-7256. DOI: 10.1039/C5SM90160J. This work was featured on the cover of Soft Matter 07 October, 2015.

Authors

  • Eric Harper

    Univ of Michigan - Ann Arbor

  • Ryan Marson

    Univ of Michigan - Ann Arbor

  • Joshua Anderson

    Univ of Michigan - Ann Arbor, Department of Chemical Engineering, University of Michigan - Ann Arbor

  • Greg van Anders

    Univ of Michigan - Ann Arbor, University of Michigan

  • Sharon Glotzer

    University of Michigan, Univ of Michigan - Ann Arbor