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  5. Surface Energy in Bond-Counting Models on Bravais and Non-Bravais Lattices
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Surface Energy in Bond-Counting Models on Bravais and Non-Bravais Lattices

Date Issued
May 1, 2017
Author(s)
Krumwiede, Tim Ryan  
Advisor(s)
Tim P. Schulze
Additional Advisor(s)
Steven Wise
Kenneth Stephenson
Yanfei Gao
Permanent URI
https://trace.tennessee.edu/handle/20.500.14382/25697
Abstract

Continuum models in computational material science require the choice of a surface energy function, based on properties of the material of interest. This work shows how to use atomistic bond-counting models and crystal geometry to inform this choice. We will examine some of the difficulties that arise in the comparison between these models due to differing types of truncation. New crystal geometry methods are required when considering materials with non-Bravais lattice structure, resulting in a multi-valued surface energy. These methods will then be presented in the context of the two-dimensional material graphene in a way that correctly predicts its equilibrium shape.

Subjects

Surface Energy

Kinetic Monte Carlo

Crystal Growth

Graphene

Disciplines
Engineering Physics
Numerical Analysis and Computation
Other Materials Science and Engineering
Degree
Doctor of Philosophy
Major
Mathematics
Embargo Date
January 1, 2011
File(s)
Thumbnail Image
Name

Krumwiede2016.pdf

Size

24.67 MB

Format

Adobe PDF

Checksum (MD5)

52cc31e5e2198bd62452a44a442d352c


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