4.7 Article

Exploring Chemical Space with the Alchemical Derivatives

期刊

JOURNAL OF CHEMICAL THEORY AND COMPUTATION
卷 9, 期 12, 页码 5327-5340

出版社

AMER CHEMICAL SOC
DOI: 10.1021/ct400706g

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资金

  1. Ministry of Science and Higher Education of Poland [N204275939]
  2. International PhD Projects Programme of the Foundation for Polish Science
  3. European Regional Development Fund within Innovative Economy Operational Programme Grants for Innovation
  4. Interdisciplinary Center for Mathematical and Computational Modeling computational grant

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In this paper, we verify the usefulness of the alchemical derivatives in the prediction of chemical properties. We concentrate on the stability of the transmutation products, where the term transmutation means the change of the nuclear charge at an atomic site at constant number of electrons. As illustrative transmutations showing the potential of the method in exploring chemical space, we present some examples of increasing complexity starting with the deprotonation, continuing with the transmutation of the nitrogen molecule, and ending with the substitution of isoelectronic B-N units for C-C units and N units for C-H units in carbocyclic systems. The basis set influence on the qualitative and quantitative accuracies of the alchemical predictions was investigated. The alchemical deprotonation energy (from the second order Taylor expansion) correlates well with the vertical deprotonation energy and can be used as a preliminary indicator for the experimental deprotonation energy. The results of calculations for the BN derivatives of benzene and pyrene show that this method has great potential for efficient and accurate scanning of chemical space.

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