Mantz Yves A, Gerard Helene, Iftimie Radu, Martyna Glenn J
IBM T.J. Watson Research Laboratory-Yorktown, Route 134 & PO Box 218, Yorktown Heights, New York 10598-0218, USA.
J Phys Chem B. 2006 Jul 13;110(27):13523-38. doi: 10.1021/jp060999y.
The properties of N-methylacetamide along a cis-trans isomerization pathway described by twisting about the C(O)-N bond are examined at finite temperature both in vacuo and in explicit water solvent. Two distinctly different theoretical descriptions, an ab initio (DFT-BLYP) and an empirical (CHARMM22) model, are studied in order to permit an assessment of the dominant forces active in the system. An analysis of the solvent structure at equilibrium and changes in solvation structure accompanying isomerization is, therefore, given for each model. Many-body polarization effects absent under CHARMM22 but present in the ab initio model are found to have a profound influence on the system. The electronic structure of the NMA molecule predicted by the ab initio method along the reaction coordinate is examined in order to shed further light on changes in peptide "partial-double" bond character [C(O)-N] as isomerization takes place. A new statistical-mechanical interpretation of the entropy change during a chemical reaction is presented to help interpret the thermochemistry of the simple reaction.
在有限温度下,于真空和明确的水溶剂中,研究了沿C(O)-N键扭转所描述的N-甲基乙酰胺顺反异构化途径的性质。研究了两种截然不同的理论描述,即从头算(DFT-BLYP)模型和经验(CHARMM22)模型,以便评估系统中起主导作用的力。因此,针对每个模型给出了平衡时的溶剂结构分析以及异构化过程中溶剂化结构的变化。发现CHARMM22模型中不存在但从头算模型中存在的多体极化效应,对系统有深远影响。研究了从头算方法沿反应坐标预测的NMA分子的电子结构,以便进一步阐明异构化发生时肽“部分双键”[C(O)-N]性质的变化。提出了一种关于化学反应过程中熵变的新统计力学解释,以帮助解释该简单反应的热化学。