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  Quantum chemistry structures and properties of 134 kilo molecules

Ramakrishnan, R., Dral, P. O., Rupp, M., & von Lilienfeld, O. A. (2014). Quantum chemistry structures and properties of 134 kilo molecules. Scientific Data, 1, 140022/1-7. doi:10.1038/sdata.2014.22.

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 Creators:
Ramakrishnan, Raghunathan1, Author
Dral, Pavlo O.2, 3, Author           
Rupp, Matthias1, Author
von Lilienfeld, O. Anatole4, Author
Affiliations:
1Department of Chemistry, Institute of Physical Chemistry, University of Basel, Klingelbergstrasse 80, CH-4056 Basel, Switzerland, ou_persistent22              
2Research Department Thiel, Max-Planck-Institut für Kohlenforschung, Max Planck Society, ou_1445590              
3Computer-Chemie-Centrum, University of Erlangen-Nuremberg, Nägelsbachstr. 25, 91052 Erlangen, Germany, ou_persistent22              
4Argonne Leadership Computing Facility, Argonne National Laboratory, 9700S. Cass Avenue, Lemont, Illinois, 60439, USA, ou_persistent22              

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Free keywords: Computational chemistry • Density functional theory • Quantum chemistry
 Abstract: Computational de novo design of new drugs and materials requires rigorous and unbiased exploration of chemical compound space. However, large uncharted territories persist due to its size scaling combinatorially with molecular size. We report computed geometric, energetic, electronic, and thermodynamic properties for 134k stable small organic molecules made up of CHONF. These molecules correspond to the subset of all 133,885 species with up to nine heavy atoms (CONF) out of the GDB-17 chemical universe of 166 billion organic molecules. We report geometries minimal in energy, corresponding harmonic frequencies, dipole moments, polarizabilities, along with energies, enthalpies, and free energies of atomization. All properties were calculated at the B3LYP/6-31G(2df,p) level of quantum chemistry. Furthermore, for the predominant stoichiometry, C7H10O2, there are 6,095 constitutional isomers among the 134k molecules. We report energies, enthalpies, and free energies of atomization at the more accurate G4MP2 level of theory for all of them. As such, this data set provides quantum chemical properties for a relevant, consistent, and comprehensive chemical space of small organic molecules. This database may serve the benchmarking of existing methods, development of new methods, such as hybrid quantum mechanics/machine learning, and systematic identification of structure-property relationships.

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Language(s): eng - English
 Dates: 2014-04-022014-07-072014-08-052014-08-05
 Publication Status: Issued
 Pages: 7
 Publishing info: -
 Table of Contents: -
 Rev. Type: Peer
 Identifiers: DOI: 10.1038/sdata.2014.22
 Degree: -

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Title: Scientific Data
  Abbreviation : Sci. Data
Source Genre: Journal
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Publ. Info: London, United Kingdom : Nature Publishing Group
Pages: - Volume / Issue: 1 Sequence Number: - Start / End Page: 140022/1-7 Identifier: ISSN: 2052-4463
CoNE: https://pure.mpg.de/cone/journals/resource/2052-4463