
Reactions of the oxygen radical anion at low pressure (ICR conditions) with aliphatic alcohols are seen to give a limited number of product anions which allows for unambiguous determination of the structure of the neutral. The reactions of OH- are also investigated and mechanisms of reactions are discussed. Analytical application of NCI is also considered. OH- negative chemical ionization mass spectra, negative metastable ion spectra, and negative collisional activation spectra (negative product from negative precursor ions) have been applied to stereochemical problems of cyclic diols. The spectra of the cis and trans isomers of 1,3- and 1,4-cyclohexanediols and 1,2- cyclopentanediols show substantial and characteristic differences. The (M-H)- alkoxide anions produced by OH- reagent ions are stabilized for the cis isomers by formation of an intramolecular hydrogen bridge involving both oxygen functions. However, trans geometry of the (M-H)- ions is indicated by abundant (M-H3)- and/or (M-H-H2O) fragment ions. The stereospecificity increases with ion internal energy (high temperature, collisional activation) or especially with ion life times (metastable ions). It is shown that in F- negative chemical ionization the relative intensities of the fluoride attachment ions MF- and of the proton abstraction ions (M-H)- reflect the stereochemistry of the cyclic diols. The results demonstrate the potential of negative ion mass spectrometry for stereochemical investigations.
Anions, Ion Exchange, Oxygen, Chemistry, Chemical Phenomena, Free Radicals, Alcohols, Molecular Conformation, Stereoisomerism, Particle Accelerators, Mass Spectrometry
Anions, Ion Exchange, Oxygen, Chemistry, Chemical Phenomena, Free Radicals, Alcohols, Molecular Conformation, Stereoisomerism, Particle Accelerators, Mass Spectrometry
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