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Parametric transform and moment indices in the molecular dynamics of n-alkanes

机译:正构烷烃分子动力学中的参数变换和矩指数

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The integrated molecular transform (FTm) is a unitary numerical index of structure that is capable of uniquely representing different molecular structure conformations with the exception of enantiomers. Other molecular indices have been derived from FTm as well as from the normalized molecular moment (M-n), for example, the analogous electronic and charge transforms (FTe and FTc) and moments (M-e and M-c). In this study, each of these indices was calculated for up to 10 sampled conformations of each of the C-1-C-10 normal alkanes as they were subjected to a standard annealing process. Statistical analyses of the resulting data in the individual series and subsequent box plots, permitting facile examination of those results, indicated that the respective transform indices (FTm, FTe, FTc) are unique, that is, with no statistically significantly overlap across the series. For the M-n and M-e indices, the numerical values for methane overlapped those of ethane in the first instance and both ethane and propane in the second. The M-c index values overlapped in several instances in the series. Inasmuch as the noted molecular indices are based only on parameters of structural origin, these results have profound implications for the correlation and estimation of properties derived not only from a general structure representation, but also for those properties which may be dependent on specific molecular conformations. This includes the potential for indices of molecular flexibility and conformationally dependent atomic electron densities. (C) 1998 John Wiley & Sons, Inc. [References: 15]
机译:集成分子转化(FTm)是结构的单位数值索引,能够唯一表示除对映异构体以外的不同分子结构构象。其他分子指数已从FTm以及归一化分子矩(M-n)得到,例如,类似的电子和电荷变换(FTe和FTc)和矩(M-e和M-c)。在这项研究中,当对每个C-1-C-10正构烷烃进行标准退火处理时,最多为10个采样构象计算出这些指数中的每一个。对各个系列和后续箱图中的所得数据进行统计分析,可以轻松检查这些结果,结果表明,各个变换指标(FTm,FTe,FTc)是唯一的,也就是说,整个系列在统计上没有明显的重叠。对于M-n和M-e指数,甲烷的数值在第一种情况下与乙烷的值重叠,在第二种情况下与乙烷和丙烷的值重叠。 M-c索引值在系列的几个实例中重叠。由于所指出的分子指数仅基于结构来源的参数,因此这些结果不仅对从一般结构表示形式得出的特性的相关性和估计具有深远的意义,而且对那些可能取决于特定分子构象的特性也具有深远的意义。这包括潜在的分子柔性指数和与构象有关的原子电子密度。 (C)1998 John Wiley&Sons,Inc. [参考:15]

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