Abstract:
The interactions between sulfur-containing compounds of dibenzothiophene (DBT) and dibenzothiophene sulfone (DBTO
2) and ionic liquids of 1-butyl-3-methylimidazolium hexafluorophosphate (BMIM
+PF
6-) and 1-butyl-3-methylimidazolium tetrafluoroborate (BMIM
+BF
4-) were comparatively studied by using density functional theory. The most stable structures of BMIM
+PF
6-, BMIM
+PF
6--DBT, BMIM
+PF
6--DBTO
2, BMIM
+BF
4-, BMIM
+BF
4--DBT, and BMIM
+BF
4--DBTO
2 systems were obtained by natural bond orbitals (NBO) and atoms in molecules (AIM) analyses. The results indicated that DBT and BMIM rings of BMIM
+PF
6-/BMIM
+BF
4- are parallel to each other. There is a strong π-π interaction between them in terms of NBO and AIM analyses. The H1' and H9' involved F…H hydrogen bonding interactions may favor the formation of π-π stacking interactions. The DBTO
2 preferentially locates near the C2-H2 and methyl group of BMIM
+ to form O…H interactions. The predicted geometries and interaction energies imply the preferential adsorption of DBTO
2 on BMIM
+PF
6-/BMIM
+BF
4-. The BMIM
+PF
6-/BF
4- have better extracting ability to remove DBTO
2 than DBT, possibly due to the larger polarity of DBTO
2 and stronger interactions between BMIM
+PF
6-/BF
4- and DBTO
2.