Study of the optical and magnetic properties of pyrimidine in water combining PCM and QM/MM methodologies


Autoria(s): MANZONI, Vinicius; LYRA, Marcelo L.; Gester, Rodrigo do Monte; Coutinho, Kaline Rabelo; Canuto, Sylvio Roberto Accioly
Contribuinte(s)

UNIVERSIDADE DE SÃO PAULO

Data(s)

18/04/2012

18/04/2012

2010

Resumo

The solvent effects on the low-lying absorption spectrum and on the (15)N chemical shielding of pyrimidine in water are calculated using the combined and sequential Monte Carlo simulation and quantum mechanical calculations. Special attention is devoted to the solute polarization. This is included by an iterative procedure previously developed where the solute is electrostatically equilibrated with the solvent. In addition, we verify the simple yet unexplored alternative of combining the polarizable continuum model (PCM) and the hybrid QM/MM method. We use PCM to obtain the average solute polarization and include this in the MM part of the sequential QM/MM methodology, PCM-MM/QM. These procedures are compared and further used in the discrete and the explicit solvent models. The use of the PCM polarization implemented in the MM part seems to generate a very good description of the average solute polarization leading to very good results for the n-pi* excitation energy and the (15)N nuclear chemical shield of pyrimidine in aqueous environment. The best results obtained here using the solute pyrimidine surrounded by 28 explicit water molecules embedded in the electrostatic field of the remaining 472 molecules give the statistically converged values for the low lying n-pi* absorption transition in water of 36 900 +/- 100 (PCM polarization) and 36 950 +/- 100 cm(-1) (iterative polarization), in excellent agreement among one another and with the experimental value observed with a band maximum at 36 900 cm(-1). For the nuclear shielding (15)N the corresponding gas-water chemical shift obtained using the solute pyrimidine surrounded by 9 explicit water molecules embedded in the electrostatic field of the remaining 491 molecules give the statistically converged values of 24.4 +/- 0.8 and 28.5 +/- 0.8 ppm, compared with the inferred experimental value of 19 +/- 2 ppm. Considering the simplicity of the PCM over the iterative polarization this is an important aspect and the computational savings point to the possibility of dealing with larger solute molecules. This PCM-MM/QM approach reconciles the simplicity of the PCM model with the reliability of the combined QM/MM approaches.

Institute of Complex Fluids (INCT-FCx)

CNPq

Coordenacao de Aperfeicoamento de Pessoal de Nivel Superior (CAPES)

FAPEAL

FAPESP (Brazil)

Identificador

PHYSICAL CHEMISTRY CHEMICAL PHYSICS, v.12, n.42, p.14023-14033, 2010

1463-9076

http://producao.usp.br/handle/BDPI/16084

10.1039/c0cp00122h

http://dx.doi.org/10.1039/c0cp00122h

Idioma(s)

eng

Publicador

ROYAL SOC CHEMISTRY

Relação

Physical Chemistry Chemical Physics

Direitos

closedAccess

Copyright ROYAL SOC CHEMISTRY

Palavras-Chave #CARLO-QUANTUM-MECHANICS #SEQUENTIAL MONTE-CARLO #PI-ASTERISK TRANSITION #SOLVENT ELECTROSTATIC POTENTIALS #PARRINELLO MOLECULAR-DYNAMICS #REACTION-FIELD METHOD #AB-INITIO #ABSORPTION-SPECTRA #SHIELDING CONSTANTS #DILUTE PYRIMIDINE #Chemistry, Physical #Physics, Atomic, Molecular & Chemical
Tipo

article

original article

publishedVersion