Multiscale modeling of polycrystalline graphene: A comparison of structure and defect energies of realistic samples from phase field crystal models

P Hirvonen, MM Ervasti, Z Fan, M Jalalvand… - Physical Review B, 2016 - APS
We extend the phase field crystal (PFC) framework to quantitative modeling of
polycrystalline graphene. PFC modeling is a powerful multiscale method for finding the …

[PDF][PDF] Multiscale modeling of polycrystalline graphene: A comparison of structure and defect energies of realistic samples from phase field crystal models

P Hirvonen, MM Ervasti, Z Fan, M Jalalvand… - core.ac.uk
We extend the phase field crystal (PFC) framework to quantitative modeling of
polycrystalline graphene. PFC models are ideal for finding the ground state configurations of …

Multiscale modeling of polycrystalline graphene

P Hirvonen, MM Ervasti, Z Fan, M Jalalvand… - 2016 - aaltodoc.aalto.fi
We extend the phase field crystal (PFC) framework to quantitative modeling of
polycrystalline graphene. PFC modeling is a powerful multiscale method for finding the …

[PDF][PDF] Multiscale modeling of polycrystalline graphene: A comparison of structure and defect energies of realistic samples from phase field crystal models

P Hirvonen, MM Ervasti, Z Fan, M Jalalvand… - Phys Rev B - scholar.archive.org
Graphene is an intensely studied material due to its remarkable mechanical strength, and
extraordinary thermal and electrical conductivities [1–4]. Graphene-based devices and …

Multiscale modeling of polycrystalline graphene: A comparison of structure and defect energies of realistic samples from phase field crystal models

P Hirvonen, MM Ervasti, Z Fan, M Jalalvand… - repository.lboro.ac.uk
We extend the phase field crystal (PFC) framework to quantitative modeling of
polycrystalline graphene. PFC models are ideal for finding the ground state configurations of …

[PDF][PDF] Multiscale modeling of polycrystalline graphene: A comparison of structure and defect energies of realistic samples from phase field crystal models

P Hirvonen, MM Ervasti, Z Fan, M Jalalvand… - Phys Rev B - academia.edu
Graphene is an intensely studied material due to its remarkable mechanical strength, and
extraordinary thermal and electrical conductivities [1–4]. Graphene-based devices and …

Multiscale modeling of polycrystalline graphene: A comparison of structure and defect energies of realistic samples from phase field crystal models

P Hirvonen, MM Ervasti, Z Fan, M Jalalvand… - Physical …, 2016 - ui.adsabs.harvard.edu
We extend the phase field crystal (PFC) framework to quantitative modeling of
polycrystalline graphene. PFC modeling is a powerful multiscale method for finding the …

Multiscale modeling of polycrystalline graphene: A comparison of structure and defect energies of realistic samples from phase field crystal models

P Hirvonen, MM Ervasti, Z Fan, M Jalalvand… - Physical Review …, 2016 - research.aalto.fi
We extend the phase field crystal (PFC) framework to quantitative modeling of
polycrystalline graphene. PFC modeling is a powerful multiscale method for finding the …

[引用][C] Multiscale modeling of polycrystalline graphene: A comparison of structure and defect energies of realistic samples from phase field crystal models

P Hirvonen, MM Ervasti, Z Fan, M Jalalvand… - Physical Review …, 2016 - par.nsf.gov

Multiscale modeling of polycrystalline graphene: A comparison of structure and defect energies of realistic samples from phase field crystal models

P Hirvonen, MM Ervasti, Z Fan, M Jalalvand… - arXiv preprint arXiv …, 2016 - arxiv.org
We extend the phase field crystal (PFC) framework to quantitative modeling of
polycrystalline graphene. PFC modeling is a powerful multiscale method for finding the …