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QSPR Modeling of Gibbs Free Energy of Organic Compounds by Weighting of Nearest Neighboring Codes
Authors:Email author" target="_blank">E?A?CastroEmail author  A?P?Toropova  A?A?Toropov  D?V?Mukhamedjanova
Institution:(1) INIFTA, Chemistry Department, Faculty of Exact Sciences, La Plata University, Diag. 113 and 64, C.C. 16, 1900 La Plata, Argentina;(2) Institute of Geology and Geophysics, Republic of Uzbekistan Academy of Sciences, Tashkent, Uzbekistan
Abstract:We examine the encoding of chemical structure of organic compounds by Labeled Hydrogen-Filled Graphs (LHFGs). Quantitative Structure-Property Relationships (QSPR) for a representative set of 150 organic molecules have been derived by means of the optimization of correlation weights of local invariants of the LHFGs. We have tested as local invariants Morgan extended connectivity of zero- and first order, numbers of path of length 2 (P2) and valence shells of distance of 2 (S2) associated with each atom in the molecular structure, and the Nearest Neighboring Codes (NNC). The best statistical characteristics for the Gibbs free energy has been obtained for the NNC weighting. Statistical parameters corresponding to this model are the following n = 100, r2 = 0.9974, s = 5.136 kJ/mol, F = 38319 (training set); n = 50, r2 = 0.9990, s = 3.405 kJ/mol, F = 48717 (test set). Some possible further developments are pointed out.
Keywords:QSPR  Gibbs free energy  local invariant  nearest neighboring code  correlation weights
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