Literature DB >> 24019594

Amino, Ammonio and Aminioethenes: A Theoretical Study of their Structure and Energetics.

Margarida S Miranda1, Joaquim C G Esteves da Silva, Alvaro Castillo, Aaron T Frank, Alexander Greer, Jodian A Brown, Brittny C Davis, Joel F Liebman.   

Abstract

We have performed high level ab initio quantum mechanical calculations for pan class="Chemical">aminoethene and the three isomeric class="Chemical">pan class="Chemical">1,1- (Z)- or (E)-1,2-diaminoethenes as well as their singly and doubly charged cations derived by loss of electrons and/or upon protonation. Gas phase molecular structures were computed at the MP2/6-311+G(3df,2p) level. Standard molar enthalpies of formation in the gas phase, at T = 298.15 K were estimated using the G3 composite method and atomization, isodesmic and homodesmotic reactions. Other energetic parameters were also calculated at the G3 level: proton affinities, basicities and adiabatic ionization enthalpies. Theoretical and experimental data are compared. The reported experimental data refer only to aminoethene wherein the standard molar enthalpy of formation has a considerable uncertainty, although the molecular structure is well-established. There are no such data, neither structural nor thermochemical, for any of the three isomeric diaminoethenes. Isoelectronic comparisons are made. For example, the diprotonated diaminoethenes are isoelectronic to isobutene and (Z)- and (E)-butene, while the doubly ionized diaminoethenes are likewise related to trimethylenemethane and 1,3-butadiene.

Entities:  

Keywords:  Aminoethenes; adiabatic ionization enthalpy; aminioethenes; ammonioethenes; basicity; enthalpy of formation; proton affinity

Year:  2013        PMID: 24019594      PMCID: PMC3765026          DOI: 10.1002/poc.3140

Source DB:  PubMed          Journal:  J Phys Org Chem        ISSN: 0894-3230            Impact factor:   2.391


  11 in total

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Authors:  Nicholas S Shuman; Melony A Ochieng; Bálint Sztáray; Tomas Baer
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9.  An investigation of the rotamers of butadiene by high-resolution infrared spectroscopy.

Authors:  Norman C Craig; Robert L Sams
Journal:  J Phys Chem A       Date:  2008-12-11       Impact factor: 2.781

10.  Adenine Synthesis in a Model Prebiotic Reaction: Connecting Origin of Life Chemistry with Biology.

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