Harrison J J, Chan C Y, Onopchenko A, Pradhan A R, Petersen M
Chevron Oronite Company LLC, Richmond, California 94802-0627, USA.
Magn Reson Chem. 2008 Feb;46(2):115-24. doi: 10.1002/mrc.2130.
A full line-shape analysis of the VT 31P NMR spectra was carried out for the monomer-dimer equilibrium of neutral ZDDP. The energy surface and the energetics of the monomer-dimer equilibrium (DeltaH degrees , DeltaG degrees , Ea, DeltaH(not equal), and DeltaG(not equal)) are reported for three variants wherein the alkyl groups in the ZDDP are 2-ethylhexyl, isopropyl, and isobutyl. We explored a reaction pathway between the monomer and dimer form by means of density functional theory (DFT). The linear combination of atomic orbitals (LCAO) code DMol3 was used together with a synchronous transient method to effectively locate transition states. Vibrational eigenmodes of all intermediates were computed to capture finite temperature effects. Methyl and ethyl were considered as alkyl groups. Two novel intermediates were located-a four-membered ring and a six-membered ring intermediate along the reaction coordinate. Comparison of the experimentally derived and computed energy surfaces was carried out.
对中性二烷基二硫代磷酸锌(ZDDP)的单体 - 二聚体平衡进行了VT 31P NMR光谱的全线形分析。报告了三种变体的能量表面和单体 - 二聚体平衡的能量学(ΔH°、ΔG°、Ea、ΔH≠和ΔG≠),其中ZDDP中的烷基分别为2 - 乙基己基、异丙基和异丁基。我们借助密度泛函理论(DFT)探索了单体和二聚体形式之间的反应途径。使用原子轨道线性组合(LCAO)代码DMol3并结合同步瞬态方法有效地定位过渡态。计算了所有中间体的振动本征模式以捕捉有限温度效应。甲基和乙基被视为烷基。沿着反应坐标定位了两种新型中间体——四元环和六元环中间体。对实验得出的和计算出的能量表面进行了比较。