Evaluating computational shortcuts in supercell-based phonon calculations of molecular crystals: the instructive case of naphthalene

T Kamencek, S Wieser, H Kojima… - Journal of Chemical …, 2020 - ACS Publications
Phonons crucially impact a variety of properties of organic semiconductor materials. For
instance, charge-and heat transport depend on low-frequency phonons, while for other …

[引用][C] Evaluating Computational Shortcuts in Supercell-Based Phonon Calculations of Molecular Crystals: The Instructive Case of Naphthalene

T Kamencek, S Wieser, H Kojima… - Journal of Chemical …, 2020 - cir.nii.ac.jp
Evaluating Computational Shortcuts in Supercell-Based Phonon Calculations of Molecular
Crystals: The Instructive Case of Naphthalene | CiNii Research CiNii 国立情報学研究所 学術 …

Evaluating Computational Shortcuts in Supercell-Based Phonon Calculations of Molecular Crystals: The Instructive Case of Naphthalene

T Kamencek, S Wieser, H Kojima… - arXiv preprint arXiv …, 2020 - arxiv.org
Phonons crucially impact a variety of properties of organic semiconductor materials. For
instance, charge-and heat transport depend on low-frequency phonons, while for other …

Evaluating Computational Shortcuts in Supercell-Based Phonon Calculations of Molecular Crystals: The Instructive Case of Naphthalene.

T Kamencek, S Wieser, H Kojima… - Journal of Chemical …, 2020 - europepmc.org
Phonons crucially impact a variety of properties of organic semiconductor materials. For
instance, charge-and heat transport depend on low-frequency phonons, while for other …

[HTML][HTML] Evaluating Computational Shortcuts in Supercell-Based Phonon Calculations of Molecular Crystals: The Instructive Case of Naphthalene

T Kamencek, S Wieser, H Kojima… - Journal of Chemical …, 2020 - ncbi.nlm.nih.gov
Phonons crucially impact a variety of properties of organic semiconductor materials. For
instance, charge-and heat transport depend on low-frequency phonons, while for other …

Evaluating Computational Shortcuts in Supercell-Based Phonon Calculations of Molecular Crystals: The Instructive Case of Naphthalene

T Kamencek, S Wieser, H Kojima… - Journal of Chemical …, 2020 - graz.elsevierpure.com
Phonons crucially impact a variety of properties of organic semiconductor materials. For
instance, charge-and heat transport depend on low-frequency phonons, while for other …

Evaluating Computational Shortcuts in Supercell-Based Phonon Calculations of Molecular Crystals: The Instructive Case of Naphthalene

T Kamencek, S Wieser, H Kojima… - Journal of Chemical …, 2020 - hero.epa.gov
Phonons crucially impact a variety of properties of organic semiconductor materials. For
instance, charge-and heat transport depend on low-frequency phonons, while for other …

Evaluating Computational Shortcuts in Supercell-Based Phonon Calculations of Molecular Crystals: The Instructive Case of Naphthalene

T Kamencek, S Wieser, H Kojima… - Bulletin of the American …, 2021 - APS
APS -APS March Meeting 2021 - Event - Evaluating Computational Shortcuts in Supercell-Based
Phonon Calculations of Molecular Crystals: The Instructive Case of Naphthalene American …

Evaluating Computational Shortcuts in Supercell-Based Phonon Calculations of Molecular Crystals: The Instructive Case of Naphthalene

T Kamencek, S Wieser, H Kojima… - … of chemical theory …, 2020 - pubmed.ncbi.nlm.nih.gov
Phonons crucially impact a variety of properties of organic semiconductor materials. For
instance, charge-and heat transport depend on low-frequency phonons, while for other …

Evaluating Computational Shortcuts in Supercell-Based Phonon Calculations of Molecular Crystals: The Instructive Case of Naphthalene

T Kamencek, S Wieser, H Kojima… - arXiv e …, 2020 - ui.adsabs.harvard.edu
Phonons crucially impact a variety of properties of organic semiconductor materials. For
instance, charge-and heat transport depend on low-frequency phonons, while for other …