The procedure of combined semiempirical quantum mechanical (AM11 and molecular mechanical potential7 was used to study the nucleophilic addition of hydroxide to formaldehyde in solution. The gas phase AM1 potential surface is approximately 26 kcal/mol more exothermic than the corresponding ab initio
Simulation of chemical reactions in solution by a combination of classical and quantum mechanical approach
โ Scribed by J.-K. Hwang; J.-J. Pan
- Publisher
- Elsevier Science
- Year
- 1995
- Tongue
- English
- Weight
- 337 KB
- Volume
- 243
- Category
- Article
- ISSN
- 0009-2614
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โฆ Synopsis
A classical trajectory mapping method was developed to study chemical reactions in solution and in enzymes. In this method, the trajectories were calculated on a classical potential surface and the free energy profile was obtained by mapping the classical surface to the quantum mechanical surface obtained by the semiempirical AM1 method. There is no need to perform expensive quantum mechanical calculations at each iteration step. This method was applied to proton transfer reactions both in aqueous solution and in papain. The results are encouraging, indicating the applicability of this hybrid method to chemical reactions both in solution and in enzymes.
๐ SIMILAR VOLUMES
A combined ab initio density functional and classical molecular dynamics simulation is carried out for a quantum water molecule in aquaeous solution. The dipole moment and ground state energy are obtained for SPC and TIP3P water models. Both local spin density and Perdew nonlocal fimctionals are use