Thank you for your kind reply
In a given circumstance, still I would want to investigate about the interaction between electrode and molecule by addressing the 'Self-Energy' concept.
For the 'Self-Energy', as I studied, its real and imaginary parts are related to shift and broadening of the molecular orbital of the junctioned molecule in a given molecular junction compared to its isolated (or free) state, respectively.
Thus, I think, in the current state in which I couldn't access the 'Self-Energy' matrix of complicated form in ATK package as you explained,
it could be a simple and effective way to theoretically study the electronic interaction between electrode and molecule: comparison of molecular orbitals of a molecule in the isolated and sandwiched states.
So, I would like to ask that "is there any way to calculate molecular orbital (orbital energy) for a free molecule in ATK package to compare the results with those of molecular junction?"
Actually in recent, in order to take account for it, I have been trying to co-use Gaussian package which was used to calculate the molecular orbital for a isolated molecule. But, due to their fundamental difference, it is difficult to find or conclude meaningful results.
Please give a help or comment on my idea.
Thank you.