Representative Random Sampling of Chemical Space

Fuente: arXiv
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Main Authors: Monterrubio-Chanca, Diego J., von Rudorff, Guido Falk
Format: Preprint
Published: 2025
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author Monterrubio-Chanca, Diego J.
von Rudorff, Guido Falk
author_facet Monterrubio-Chanca, Diego J.
von Rudorff, Guido Falk
contents The overwhelming majority of molecules remains unexplored. This is mostly due to the sheer number of them, which prohibits any enumeration of chemical space, the set of all such molecules. In practice, only subsets of chemical space are considered, but those subsets exhibit substantial bias, prohibiting data-driven characterization of chemical space itself. In this work, we provide a method produce unbiased representative random samples of chemical space without enumeration of constituent molecules and to estimate the number of molecules in any custom chemical space. The approach is applicable to molecules which can be represented as graph and runs efficiently even for molecules of 30 atoms. We use it to estimate the representativeness of current databases with respect to their underlying chemical space and to establish a necessary criterion for a lower bound of database sizes to be representative of an underlying chemical space.
format Preprint
id arxiv_https___arxiv_org_abs_2508_20609
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Representative Random Sampling of Chemical Space
Monterrubio-Chanca, Diego J.
von Rudorff, Guido Falk
Chemical Physics
The overwhelming majority of molecules remains unexplored. This is mostly due to the sheer number of them, which prohibits any enumeration of chemical space, the set of all such molecules. In practice, only subsets of chemical space are considered, but those subsets exhibit substantial bias, prohibiting data-driven characterization of chemical space itself. In this work, we provide a method produce unbiased representative random samples of chemical space without enumeration of constituent molecules and to estimate the number of molecules in any custom chemical space. The approach is applicable to molecules which can be represented as graph and runs efficiently even for molecules of 30 atoms. We use it to estimate the representativeness of current databases with respect to their underlying chemical space and to establish a necessary criterion for a lower bound of database sizes to be representative of an underlying chemical space.
title Representative Random Sampling of Chemical Space
topic Chemical Physics
url https://arxiv.org/abs/2508.20609