Molecules and atoms are generally more or less electrically neutral. So coulombic forces are not a significant factor with inter-molecular forces (ions notwithstanding). Though I would expect that in very close proximities that the shielding effect would make an atom appear slightly negatively charged (and thus you may get coulombic repulsion that way). But I think that the primary forces at play are called the Van der Waals-London forces. There are three forces here, the orientation force, induction force, and London force (also better described as the Casimir-Polder force). The orientation force is the force that occurs between molecules with permanent dipole moments. This occurs because when we have two electric dipoles then the energy of the system is dependent upon the orientation of these dipoles with respect to each other. When you consider the distribution of energies in a system due to Boltzmann statistics then you find certain orientations are favored over others and there is a net force.
The induction force is between a molecule of permanent dipole moment and another that is polarizable. That is, the permanent dipole induces a weak dipole in the other molecule. Again this system gives rise to a net force.
The London force is between two polarizable molecules. However, this only works in quantum mechanics where we assume that the molecules have an oscillating polarization due to the fact that an oscillator has a non-zero ground state energy. London did not explain how this arises in his paper but Casimir and Polder theorized that this arised from the fluctuating fields of the vacuum ground state. Anyway, these fluctuating fields give rise to momentary dipoles in the polarizable molecules and you get your third force that way.
These forces have both an attraction and repulsion profile. So while it can be used to explain why things are sticky (and how the gecko defies gravity), it also explains how the molecules can repulse. Still, I would imagine that it would depend upon the exact situation to see whether coulombic or Van der Waals-London are dominant.