Abstract:
The structure of anion-intercalated MgAl-layered double hydroxides (MgAl-LDHs) and the interaction between the anion and host layer were investigated by density functional theory (DFT); the anions considered were inorganic ones like F
-, Cl
-, NO
3-, CO
32- and SO
42-, as well as organic ones like
p-(CH
3)
2N(C
6H
4)COO
-, (C
6H
5)COO
-, HO(C
6H
4)COO
-, C
12H
25SO
3-, C
6H
13SO
3- and C
3H
7SO
3-. The geometric structures and interactional energies between the anions and host layer were obtained. The results showed that there is a strong supra-molecular interaction between anions and host layer of MgAl-LDHs and the interactional energy values followed the orders of CO
32- > SO
42- > F
- > Cl
- > NO
3-,
p-(CH
3)
2N(C
6H
4)COO
- > (C
6H
5)COO
- > HO(C
6H
4)COO
-, and C
12H
25SO
3- > C
6H
13SO
3- > C
3H
7SO
3-. In addition, the interaction mechanism between anions and host layer was considered by the natural bond orbital (NBO) analysis; the trend of stability energies calculated by the second order perturbation agrees well with that of the interactional energies.