Interatomic interactions such as hydrogen bonds (HE) can be adequately described and classified by the topological properties of the electron density rho(r) at the (3,-1) critical points r(CP) where the gradients of rho(r) vanish. We have analysed the topological properties of rho(r) at the intermolecular critical points of 83 experimentally observed HBs [X-H ... O (X=C,N,O)], using accurate X-ray diffraction experiments. In spite of different models, methods and experimental conditions employed to obtain the topological properties of rho(r), we show that, for closed-shell interactions, the kinetic energy density G(r(CP)) and the potential energy density V(r(CP)) at the critical point depend exponentially on the H ... O distance. Moreover, theoretical calculations for several HE dissociation energies follow the same law as does V(r(CP)), with a simple change of scale. (C) 1998 Elsevier Science B.V.