CHAOS -- A Consistent Large-scale Database for Sigma-Profiles and Other Molecular Descriptors

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Hauptverfasser: Gond, Dominik, Arweiler, Justus, Specht, Thomas, Hasse, Hans, Jirasek, Fabian
Format: Preprint
Veröffentlicht: 2025
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author Gond, Dominik
Arweiler, Justus
Specht, Thomas
Hasse, Hans
Jirasek, Fabian
author_facet Gond, Dominik
Arweiler, Justus
Specht, Thomas
Hasse, Hans
Jirasek, Fabian
contents Sigma-profiles obtained from quantum-chemical calculations are key molecular descriptors for solvent selection, thermodynamic modeling, and data-driven molecular design. However, existing sigma-profile libraries are limited in size and inconsistent in quality, which restricts their utility. In this work, we introduce CHAOS (Computed High-Accuracy Observables and Sigma Profiles), a large-scale and internally consistent database providing sigma-profiles for 53091 molecules, along with additional quantum-chemical observables including gas-phase geometries, single-point conductor-like polarizable continuum (C-PCM) data, infrared spectra, ideal-gas heat capacities and entropies, and atomic orbital nuclear magnetic resonance (NMR) shielding tensors. All data were generated using a standardized quantum-chemical workflow based on an wB97X-D/def2-TZVP level of theory. The CHAOS database covers molecules composed of a diverse set of elements, with molecular masses up to 400 amu and dipole moments up to 15 D, and is freely available on Zenodo under an open license. It extends the number of molecules for which sigma-profiles are publicly available by more than an order of magnitude and systematically links them to a broad range of other quantum-chemical molecular descriptors. CHAOS provides a comprehensive and consistent foundation for developing models of molecular and thermodynamic properties -- both physics-based and machine-learning approaches -- across chemistry, chemical engineering, and materials science, greatly extending the possibilities and the available quantum-chemical data basis.
format Preprint
id arxiv_https___arxiv_org_abs_2511_19002
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle CHAOS -- A Consistent Large-scale Database for Sigma-Profiles and Other Molecular Descriptors
Gond, Dominik
Arweiler, Justus
Specht, Thomas
Hasse, Hans
Jirasek, Fabian
Chemical Physics
Sigma-profiles obtained from quantum-chemical calculations are key molecular descriptors for solvent selection, thermodynamic modeling, and data-driven molecular design. However, existing sigma-profile libraries are limited in size and inconsistent in quality, which restricts their utility. In this work, we introduce CHAOS (Computed High-Accuracy Observables and Sigma Profiles), a large-scale and internally consistent database providing sigma-profiles for 53091 molecules, along with additional quantum-chemical observables including gas-phase geometries, single-point conductor-like polarizable continuum (C-PCM) data, infrared spectra, ideal-gas heat capacities and entropies, and atomic orbital nuclear magnetic resonance (NMR) shielding tensors. All data were generated using a standardized quantum-chemical workflow based on an wB97X-D/def2-TZVP level of theory. The CHAOS database covers molecules composed of a diverse set of elements, with molecular masses up to 400 amu and dipole moments up to 15 D, and is freely available on Zenodo under an open license. It extends the number of molecules for which sigma-profiles are publicly available by more than an order of magnitude and systematically links them to a broad range of other quantum-chemical molecular descriptors. CHAOS provides a comprehensive and consistent foundation for developing models of molecular and thermodynamic properties -- both physics-based and machine-learning approaches -- across chemistry, chemical engineering, and materials science, greatly extending the possibilities and the available quantum-chemical data basis.
title CHAOS -- A Consistent Large-scale Database for Sigma-Profiles and Other Molecular Descriptors
topic Chemical Physics
url https://arxiv.org/abs/2511.19002