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chemical_formula_hill
string
chemical_formula_reduced
string
chemical_formula_anonymous
string
atomic_numbers
sequence
elements
sequence
elements_ratios
sequence
nelements
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nsites
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cell
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positions
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pbc
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dimension_types
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nperiodic_dimensions
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structure_hash
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multiplicity
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software
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method
string
adsorption_energy
float64
atomic_forces
sequence
atomization_energy
float64
cauchy_stress
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cauchy_stress_volume_normalized
bool
electronic_band_gap
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electronic_band_gap_type
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energy
float64
formation_energy
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max_force_norm
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mean_force_norm
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property_object_metadata
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property_object_metadata_id
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property_object_last_modified
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property_object_hash
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property_object_id
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configuration_metadata
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configuration_metadata_id
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configuration_labels
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configuration_names
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configuration_dataset_ids
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configuration_last_modified
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configuration_hash
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configuration_id
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dataset_name
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dataset_authors
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dataset_description
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dataset_elements
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dataset_nelements
int32
dataset_nproperty_objects
int64
dataset_nconfigurations
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dataset_nsites
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dataset_adsorption_energy_count
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dataset_atomic_forces_count
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dataset_atomization_energy_count
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dataset_cauchy_stress_count
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dataset_electronic_band_gap_count
int64
dataset_energy_count
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dataset_energy_mean
float64
dataset_energy_variance
float64
dataset_formation_energy_count
int64
dataset_last_modified
timestamp[ns]
dataset_dimension_types
sequence
dataset_nperiodic_dimensions
sequence
dataset_publication_year
string
dataset_total_elements_ratios
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dataset_license
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dataset_links
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dataset_doi
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dataset_hash
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dataset_id
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dataset_extended_id
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C2H7O
C2H7O
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2024-08-16T14:15:17
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COLL_validation
[ "Johannes Gasteiger", "Shankari Giri", "Johannes T. Margraf", "Stephan Günnemann" ]
Validation set from COLL. Consists of configurations taken from molecular collisions of different small organic molecules. Energies and forces for 140,000 random snapshots taken from these trajectories were recomputed with density functional theory (DFT). These calculations were performed with the revPBE functional and def2-TZVP basis, including D3 dispersion corrections
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2024-08-16T15:06:44
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COLL_validation
[ "Johannes Gasteiger", "Shankari Giri", "Johannes T. Margraf", "Stephan Günnemann" ]
Validation set from COLL. Consists of configurations taken from molecular collisions of different small organic molecules. Energies and forces for 140,000 random snapshots taken from these trajectories were recomputed with density functional theory (DFT). These calculations were performed with the revPBE functional and def2-TZVP basis, including D3 dispersion corrections
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2024-08-16T14:33:39
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2023-12-02T00:15:35
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COLL_validation
[ "Johannes Gasteiger", "Shankari Giri", "Johannes T. Margraf", "Stephan Günnemann" ]
Validation set from COLL. Consists of configurations taken from molecular collisions of different small organic molecules. Energies and forces for 140,000 random snapshots taken from these trajectories were recomputed with density functional theory (DFT). These calculations were performed with the revPBE functional and def2-TZVP basis, including D3 dispersion corrections
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C3H7O
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2024-08-16T14:59:34
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2023-12-02T00:15:34
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COLL_validation
[ "Johannes Gasteiger", "Shankari Giri", "Johannes T. Margraf", "Stephan Günnemann" ]
Validation set from COLL. Consists of configurations taken from molecular collisions of different small organic molecules. Energies and forces for 140,000 random snapshots taken from these trajectories were recomputed with density functional theory (DFT). These calculations were performed with the revPBE functional and def2-TZVP basis, including D3 dispersion corrections
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DS_1y25o4zvyfm0_0
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2024-08-16T14:51:39
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2023-12-02T00:15:35
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COLL_validation
[ "Johannes Gasteiger", "Shankari Giri", "Johannes T. Margraf", "Stephan Günnemann" ]
Validation set from COLL. Consists of configurations taken from molecular collisions of different small organic molecules. Energies and forces for 140,000 random snapshots taken from these trajectories were recomputed with density functional theory (DFT). These calculations were performed with the revPBE functional and def2-TZVP basis, including D3 dispersion corrections
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Validation set from COLL. Consists of configurations taken from molecular collisions of different small organic molecules. Energies and forces for 140,000 random snapshots taken from these trajectories were recomputed with density functional theory (DFT). These calculations were performed with the revPBE functional and def2-TZVP basis, including D3 dispersion corrections
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Validation set from COLL. Consists of configurations taken from molecular collisions of different small organic molecules. Energies and forces for 140,000 random snapshots taken from these trajectories were recomputed with density functional theory (DFT). These calculations were performed with the revPBE functional and def2-TZVP basis, including D3 dispersion corrections
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Validation set from COLL. Consists of configurations taken from molecular collisions of different small organic molecules. Energies and forces for 140,000 random snapshots taken from these trajectories were recomputed with density functional theory (DFT). These calculations were performed with the revPBE functional and def2-TZVP basis, including D3 dispersion corrections
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Validation set from COLL. Consists of configurations taken from molecular collisions of different small organic molecules. Energies and forces for 140,000 random snapshots taken from these trajectories were recomputed with density functional theory (DFT). These calculations were performed with the revPBE functional and def2-TZVP basis, including D3 dispersion corrections
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Validation set from COLL. Consists of configurations taken from molecular collisions of different small organic molecules. Energies and forces for 140,000 random snapshots taken from these trajectories were recomputed with density functional theory (DFT). These calculations were performed with the revPBE functional and def2-TZVP basis, including D3 dispersion corrections
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Validation set from COLL. Consists of configurations taken from molecular collisions of different small organic molecules. Energies and forces for 140,000 random snapshots taken from these trajectories were recomputed with density functional theory (DFT). These calculations were performed with the revPBE functional and def2-TZVP basis, including D3 dispersion corrections
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Validation set from COLL. Consists of configurations taken from molecular collisions of different small organic molecules. Energies and forces for 140,000 random snapshots taken from these trajectories were recomputed with density functional theory (DFT). These calculations were performed with the revPBE functional and def2-TZVP basis, including D3 dispersion corrections
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Validation set from COLL. Consists of configurations taken from molecular collisions of different small organic molecules. Energies and forces for 140,000 random snapshots taken from these trajectories were recomputed with density functional theory (DFT). These calculations were performed with the revPBE functional and def2-TZVP basis, including D3 dispersion corrections
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Validation set from COLL. Consists of configurations taken from molecular collisions of different small organic molecules. Energies and forces for 140,000 random snapshots taken from these trajectories were recomputed with density functional theory (DFT). These calculations were performed with the revPBE functional and def2-TZVP basis, including D3 dispersion corrections
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Validation set from COLL. Consists of configurations taken from molecular collisions of different small organic molecules. Energies and forces for 140,000 random snapshots taken from these trajectories were recomputed with density functional theory (DFT). These calculations were performed with the revPBE functional and def2-TZVP basis, including D3 dispersion corrections
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2023-12-02T00:15:35
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CO_1021329408192479521803574
COLL_validation
[ "Johannes Gasteiger", "Shankari Giri", "Johannes T. Margraf", "Stephan Günnemann" ]
Validation set from COLL. Consists of configurations taken from molecular collisions of different small organic molecules. Energies and forces for 140,000 random snapshots taken from these trajectories were recomputed with density functional theory (DFT). These calculations were performed with the revPBE functional and def2-TZVP basis, including D3 dispersion corrections
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2024-08-16T14:47:04
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CO_1021693232318509074353203
COLL_validation
[ "Johannes Gasteiger", "Shankari Giri", "Johannes T. Margraf", "Stephan Günnemann" ]
Validation set from COLL. Consists of configurations taken from molecular collisions of different small organic molecules. Energies and forces for 140,000 random snapshots taken from these trajectories were recomputed with density functional theory (DFT). These calculations were performed with the revPBE functional and def2-TZVP basis, including D3 dispersion corrections
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2024-08-16T14:26:10
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COLL_validation
[ "Johannes Gasteiger", "Shankari Giri", "Johannes T. Margraf", "Stephan Günnemann" ]
Validation set from COLL. Consists of configurations taken from molecular collisions of different small organic molecules. Energies and forces for 140,000 random snapshots taken from these trajectories were recomputed with density functional theory (DFT). These calculations were performed with the revPBE functional and def2-TZVP basis, including D3 dispersion corrections
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2024-08-16T14:13:32
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2023-12-02T00:15:35
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COLL_validation
[ "Johannes Gasteiger", "Shankari Giri", "Johannes T. Margraf", "Stephan Günnemann" ]
Validation set from COLL. Consists of configurations taken from molecular collisions of different small organic molecules. Energies and forces for 140,000 random snapshots taken from these trajectories were recomputed with density functional theory (DFT). These calculations were performed with the revPBE functional and def2-TZVP basis, including D3 dispersion corrections
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2024-08-16T14:28:45
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2023-12-02T00:15:35
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COLL_validation
[ "Johannes Gasteiger", "Shankari Giri", "Johannes T. Margraf", "Stephan Günnemann" ]
Validation set from COLL. Consists of configurations taken from molecular collisions of different small organic molecules. Energies and forces for 140,000 random snapshots taken from these trajectories were recomputed with density functional theory (DFT). These calculations were performed with the revPBE functional and def2-TZVP basis, including D3 dispersion corrections
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DS_1y25o4zvyfm0_0
COLL_validation__Gasteiger-Giri-Margraf-Günnemann__DS_1y25o4zvyfm0_0
End of preview. Expand in Data Studio

Dataset

COLL validation

Description

Validation set from COLL. Consists of configurations taken from molecular collisions of different small organic molecules. Energies and forces for 140,000 random snapshots taken from these trajectories were recomputed with density functional theory (DFT). These calculations were performed with the revPBE functional and def2-TZVP basis, including D3 dispersion corrections

Additional details stored in dataset columns prepended with "dataset_".

Dataset authors

Johannes Gasteiger, Shankari Giri, Johannes T. Margraf, Stephan Günnemann

Publication

https://doi.org/10.48550/arXiv.2011.14115

Original data link

https://doi.org/10.6084/m9.figshare.13289165.v1

License

CC-BY-4.0

Number of unique molecular configurations

10000

Number of atoms

101847

Elements included

C, H, O

Properties included

energy, atomization energy, atomic forces, cauchy stress

Cite this dataset

Gasteiger, J., Giri, S., Margraf, J. T., and Günnemann, S. COLL validation. ColabFit, 2023. https://doi.org/10.60732/a1ccb643

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