Abstract
We establish the physical origins of chemical transferability from the perspective of the nearsightedness of electronic matter. To do this, we explicitly evaluate the response of electron density to a change in the system, at constant chemical potential, by computing the softness kernel, s(r, r). The softness kernel is nearsighted, indicating that under constant-chemical-potential conditions like dilute solutions changing the composition of the molecule at r has only local effects and does not have any significant impact on the reactivity at positions r far away from point r. This locality principle elucidates the transferability of functional groups in chemistry.
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Fias, S., Heidar-Zadeh, F., Geerlings, P., & Ayers, P. W. (2017). Chemical transferability of functional groups follows from the nearsightedness of electronic matter. Proceedings of the National Academy of Sciences of the United States of America, 114(44), 11633–11638. https://doi.org/10.1073/pnas.1615053114
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