Crystal orbital overlap population based on all-electron ab initio simulation with numeric atom-centered orbitals and its application to chemical-bonding analysis in Li-intercalated layered materials | Matter42 Literature
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Crystal orbital overlap population based on all-electron ab initio simulation with numeric atom-centered orbitals and its application to chemical-bonding analysis in Li-intercalated layered materials
Izumi Takahara, Kiyou Shibata, Teruyasu Mizoguchi
Modelling and Simulation in Materials Science and Engineering·2025·10.1088/1361-651X/ad4c82·arXiv:2405.03165
Samples
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
Isolated F₂ molecule used to demonstrate overlap population analysis.
No measurements recorded
SimulatedF₂Studied Material
Diamond-type Si bulk system used to demonstrate COOP analysis.
No measurements recorded
Simulated Supercell DftSiStudied Material
Graphite host structure used in Li intercalation study.
No measurements recorded
Simulated Supercell DftCStudied Material
Li-intercalated graphite system.
No measurements recorded
Simulated Supercell DftCStudied MaterialLiStudied Material
MoS₂ host structure used in Li intercalation study.
No measurements recorded
Simulated Supercell DftMoS₂Studied Material
Li-intercalated MoS₂ system.
No measurements recorded
Simulated Supercell DftMoS₂Studied MaterialLiStudied Material
ZrNCl host structure used in Li intercalation study.
No measurements recorded
Simulated Supercell DftZrNClStudied Material
Li-intercalated ZrNCl system.
No measurements recorded
Simulated Supercell DftZrNClStudied MaterialLiStudied Material
Why these are connected
Related documents with shared materials, methods, properties, or citations.
Crystal orbital overlap population based on all-electron ab initio simulation with numeric atom-centered orbitals and its application to chemical-bonding analysis in Li-intercalated layered materials
Izumi Takahara, Kiyou Shibata, Teruyasu Mizoguchi
Modelling and Simulation in Materials Science and Engineering·2025·10.1088/1361-651X/ad4c82·arXiv:2405.03165
Samples
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
Isolated F₂ molecule used to demonstrate overlap population analysis.
No measurements recorded
SimulatedF₂Studied Material
Diamond-type Si bulk system used to demonstrate COOP analysis.
No measurements recorded
Simulated Supercell DftSiStudied Material
Graphite host structure used in Li intercalation study.
No measurements recorded
Simulated Supercell DftCStudied Material
Li-intercalated graphite system.
No measurements recorded
Simulated Supercell DftCStudied MaterialLiStudied Material
MoS₂ host structure used in Li intercalation study.
No measurements recorded
Simulated Supercell DftMoS₂Studied Material
Li-intercalated MoS₂ system.
No measurements recorded
Simulated Supercell DftMoS₂Studied MaterialLiStudied Material
ZrNCl host structure used in Li intercalation study.
No measurements recorded
Simulated Supercell DftZrNClStudied Material
Li-intercalated ZrNCl system.
No measurements recorded
Simulated Supercell DftZrNClStudied MaterialLiStudied Material
Why these are connected
Related documents with shared materials, methods, properties, or citations.
Crystal orbital overlap population based on all-electron ab initio simulation with numeric atom-centered orbitals and its application to chemical-bonding analysis in Li-intercalated layered materials
Izumi Takahara, Kiyou Shibata, Teruyasu Mizoguchi
Modelling and Simulation in Materials Science and Engineering·2025·10.1088/1361-651X/ad4c82·arXiv:2405.03165
Samples
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
Isolated F₂ molecule used to demonstrate overlap population analysis.
No measurements recorded
SimulatedF₂Studied Material
Diamond-type Si bulk system used to demonstrate COOP analysis.
No measurements recorded
Simulated Supercell DftSiStudied Material
Graphite host structure used in Li intercalation study.
No measurements recorded
Simulated Supercell DftCStudied Material
Li-intercalated graphite system.
No measurements recorded
Simulated Supercell DftCStudied MaterialLiStudied Material
MoS₂ host structure used in Li intercalation study.
No measurements recorded
Simulated Supercell DftMoS₂Studied Material
Li-intercalated MoS₂ system.
No measurements recorded
Simulated Supercell DftMoS₂Studied MaterialLiStudied Material
ZrNCl host structure used in Li intercalation study.
No measurements recorded
Simulated Supercell DftZrNClStudied Material
Li-intercalated ZrNCl system.
No measurements recorded
Simulated Supercell DftZrNClStudied MaterialLiStudied Material
Why these are connected
Related documents with shared materials, methods, properties, or citations.
Crystal orbital overlap population based on all-electron ab initio simulation with numeric atom-centered orbitals and its application to chemical-bonding analysis in Li-intercalated layered materials
Izumi Takahara, Kiyou Shibata, Teruyasu Mizoguchi
Modelling and Simulation in Materials Science and Engineering·2025·10.1088/1361-651X/ad4c82·arXiv:2405.03165
Samples
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
Isolated F₂ molecule used to demonstrate overlap population analysis.
No measurements recorded
SimulatedF₂Studied Material
Diamond-type Si bulk system used to demonstrate COOP analysis.
No measurements recorded
Simulated Supercell DftSiStudied Material
Graphite host structure used in Li intercalation study.
No measurements recorded
Simulated Supercell DftCStudied Material
Li-intercalated graphite system.
No measurements recorded
Simulated Supercell DftCStudied MaterialLiStudied Material
MoS₂ host structure used in Li intercalation study.
No measurements recorded
Simulated Supercell DftMoS₂Studied Material
Li-intercalated MoS₂ system.
No measurements recorded
Simulated Supercell DftMoS₂Studied MaterialLiStudied Material
ZrNCl host structure used in Li intercalation study.
No measurements recorded
Simulated Supercell DftZrNClStudied Material
Li-intercalated ZrNCl system.
No measurements recorded
Simulated Supercell DftZrNClStudied MaterialLiStudied Material
Why these are connected
Related documents with shared materials, methods, properties, or citations.