The minimum would be a box such that there are no basis set overlaps between repeated images, but in addition one will always need some vacuum padding also to reduce the long-range electrostatic interactions. Therefore, the best approach is to treat a molecule as a molecule.
Hi Mr.Anders Thanks.But I have a doubt
Does calculating the formation energy by doing optimization of Bulk(graphene,graphene and functional group) and Molecule(functional group) affect the result Kindly clarify.
Any ways I will check the result for total energy for the functional group molecule and let you know the results for both Bulk and Molecule optimization.
Dear Mr.Anders,
I have calculated the total energy for the bulk and molecule configuration as you said I didt' get much change,provided my vacuum padding should have been good enough.Thanks for your guidance.I have posted my queries below???
These are the values I got---
Molecule optimized in bulk config- -2717.84430 eV
Molecule optimized in molecule config- -2717.77142 eV
But the formula which I mentioned for formation energy is for doping(with a substitutional atom).In my system I am using Graphene and a molecule to check for the binding/interaction energy,charge transfer density(Mulliken population-correct???) ,polarisability and formation energy.
Kindly help me how to calculate the following in my study??
1. formation energy (in the reference paper
S.S. Yu, W.T. Zheng, Q.B. Wen, Q. Jiang, Carbon 46 (2008) 537–543.) was calculated for Ni doping,where they estimate the total energy of carbon and nitrogen separately for calculating the formation energy.But my system has molecule with different atoms.So confused how to calculate formation energy in my study??? Should I optimize my molecule itself and subtract the total energy or what should I do???
2.charge transer,polarisability(from the results of polarisation).How to calculate alpha(polarisability) from the Pi,Pe,Pt values which I got???
3.Then the charge transfer or withdrawal from the Mulliken Population.I got values for Mulliken Population but could not predict anything due to lack of formulas or knowledge.
4.There is no vander Waal's interaction in my system.It's purely the bonding of the molecule on graphene.So should I calculate the BSSE and counterpoise correction which is for two systems separated by a distance.If then help me for scripts and incorporation of the scripts ate the right place.
Your assistance will be helpful to me.
Regards
Jananikumar