Zong-gui TANG, Jing WANG, Xia CHEN, Guo-hong WANG, Chun-xia LU. Computational Strategies for the Design and Study of Oleanolic Acid-imprinted Prepolymerization Mixtures[J]. Polymer Bulletin, 2017,30(6):47-58.
the pre-organization system of molecularly imprinted polymer with oleanolic acid as template
2-(trifluoromethyl) acrylic acid (TFMAA)
methacrylic acid (MAA)
acrylamide (AM)
and 4-vinylpyridine (4-VP) as functional monomers
chloroform
tetrahydrofuran (THF)
ethanol
methanol
and acetone as solvents was studied by computational methods. The density functional theory (DFT) and ONIOM method was used to investigate the geometry optimization
active sites
natural bond orbital charges
binding energies of the imprinted molecule. The solvation energy of template and monomer in different solvent was calculated using self-consistent reaction field of polarizable con-tinuum model approach (CPCM). The theoretical results showed that the compound of the ratio of OA-TFMAA (1:1) had the highest binding energy (-70. 99kJ•mol
-1
) and the most stable structure
and the solvation energy for template and monomer in chloroform were lower than that in THF
ethanol
methanol
and acetone. The corresponding experimental results were used to verify the simulation results. Meanwhile
the polymers were characterized by using scanning electron microscopy
fourier transform infrared spectrum
and adsorption experiments. The experimental result is completely consistent with the theoretic analysis
which indicates that the computer simulations can provide a route to more efficient MIP design strategies.