ExplorerPharmaceutical ResearchBiochemistry
Research PaperResearchia:202609.04079

Enumerating Chemical Structures, Stereoisomers, and Stereogenic Units with Analytic Combinatorics

Casper Asbjørn Eriksen

Abstract

The enumeration of chemical structures traditionally relies on graph- and group-theoretic techniques, including Pólya theory, in order to account for stereochemical symmetries. These methods require bespoke derivations and methods for each molecular family of interest, and quickly become very intricate for nontrivial classes. In this work, we demonstrate that analytic combinatorics provides a unifying, highly extensible, and relatively simple framework for enumeration problems. Using the symboli...

Submitted: September 4, 2026Subjects: Biochemistry; Pharmaceutical Research

Description / Details

The enumeration of chemical structures traditionally relies on graph- and group-theoretic techniques, including Pólya theory, in order to account for stereochemical symmetries. These methods require bespoke derivations and methods for each molecular family of interest, and quickly become very intricate for nontrivial classes. In this work, we demonstrate that analytic combinatorics provides a unifying, highly extensible, and relatively simple framework for enumeration problems. Using the symbolic method, we show that classical counting problems, such as the enumeration of acyclic alkanes and other hydrocarbon families, can be naturally solved via concise combinatorial specifications of the class of interest. We first demonstrate the simplicity of this approach by replicating existing results in this framework, requiring significantly less work than previously necessary, and then extend these ideas to more complex problems, counting broader classes of molecules accounting for both tetrahedral and E/Z stereoisomerism, counting the distribution of stereogenic units, and enumerating achiral and meso compounds. All results are made reproducible through CombOL, our open-source software package which automates the translation of combinatorial specifications into generating functions using the symbolic method, and performs both univariate and multivariate enumeration.


Source: arXiv:2609.02932v1 - http://arxiv.org/abs/2609.02932v1 PDF: https://arxiv.org/pdf/2609.02932v1 Original Link: http://arxiv.org/abs/2609.02932v1

Please sign in to join the discussion.

No comments yet. Be the first to share your thoughts!

Access Paper
View Source PDF
Submission Info
Date:
Sep 4, 2026
Topic:
Pharmaceutical Research
Area:
Biochemistry
Comments:
0
Bookmark