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Extended-Connectivity Fingerprints

David Rogers; Mathew Hahn · Journal of Chemical Information and Modeling · 2010

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Extended-connectivity fingerprints (ECFPs) are a novel class of topological fingerprints for molecular characterization. Historically, topological fingerprints were developed for substructure and similarity searching. ECFPs were developed specifically for structure-activity modeling. ECFPs are circular fingerprints with a number of useful qualities: they can be very rapidly calculated; they are not predefined and can represent an essentially infinite number of different molecular features (including stereochemical information); their features represent the presence of particular substructures, allowing easier interpretation of analysis results; and the ECFP algorithm can be tailored to generate different types of circular fingerprints, optimized for different uses. While the use of ECFPs has been widely adopted and validated, a description of their implementation has not previously been presented in the literature.

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APA 7

Rogers, D. & Hahn, M. (2010). Extended-Connectivity Fingerprints. https://doi.org/10.1021/ci100050t

MLA

Rogers, David, and Mathew Hahn. "Extended-Connectivity Fingerprints." 2010. https://doi.org/10.1021/ci100050t.

Chicago

Rogers, David and Mathew Hahn. 2010. "Extended-Connectivity Fingerprints.". https://doi.org/10.1021/ci100050t.

Harvard

Rogers, D. and Hahn, M. 2010, Extended-Connectivity Fingerprints, Journal of Chemical Information and Modeling, available at: https://doi.org/10.1021/ci100050t [Accessed 8 Aug. 2026].

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Title
Extended-Connectivity Fingerprints
Author / contributors
David Rogers; Mathew Hahn
Publisher
Journal of Chemical Information and Modeling
Publication year
2010
Language
English

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