Using a high resolution electron energy monochromator low energy electron attachment to formic acid is studied for the first time by means of mass spectrometric detection of the product anions. The largest dissociative electron attachment (DA) cross-section produces ${\rm HCOO}^- {+} {\rm H}$ with weaker channels for OH- and O- becoming apparent at higher incident energies
Following our earlier study on the dynamics of low energy electron attachment to formic acid, we rep...
Gas-phase formation of temporary negative ion states via resonance attachment of low-energy (0-6 eV)...
Formamide (HCONH2) is the smallest molecule with a peptide bond and has recently been observed in th...
Using a high resolution electron energy monochromator low energy electron attachment to formic acid ...
Dissociative electron attachment to formic acid (HCOOH) is studied in a crossed beams experiment usi...
Dissociative electron attachment to formic acid in the condensed phase is studied using improved mas...
Dissociative electron attachment to formic acid as a fundamental center in enzymatic activity is stu...
We report the results of a joint experimental and theoretical study of dissociative electron attachm...
Low-energy electrons (<2 eV) can fragment gas phase formic acid (HCOOH) molecules through resona...
International audienceContext. The methyl formate molecule (HCOOCH3) is considered to be a key molec...
Experimental electron-impact ionization cross sections of one of the simplest carboxylic acids, form...
The (HCOOH)(2) anion, formed by electron attachment to the formic acid dimer (FA(2)), is an archetyp...
Author Institution: Yale University, Department of Chemistry, New Haven, CTWe have isolated the stab...
The (HCOOH) 2 anion, formed by electron attachment to the formic acid dimer (FA 2), is an archetypal...
Context. The methyl formate molecule (HCOOCH3) is considered to be a key molecule in astrochemistry....
Following our earlier study on the dynamics of low energy electron attachment to formic acid, we rep...
Gas-phase formation of temporary negative ion states via resonance attachment of low-energy (0-6 eV)...
Formamide (HCONH2) is the smallest molecule with a peptide bond and has recently been observed in th...
Using a high resolution electron energy monochromator low energy electron attachment to formic acid ...
Dissociative electron attachment to formic acid (HCOOH) is studied in a crossed beams experiment usi...
Dissociative electron attachment to formic acid in the condensed phase is studied using improved mas...
Dissociative electron attachment to formic acid as a fundamental center in enzymatic activity is stu...
We report the results of a joint experimental and theoretical study of dissociative electron attachm...
Low-energy electrons (<2 eV) can fragment gas phase formic acid (HCOOH) molecules through resona...
International audienceContext. The methyl formate molecule (HCOOCH3) is considered to be a key molec...
Experimental electron-impact ionization cross sections of one of the simplest carboxylic acids, form...
The (HCOOH)(2) anion, formed by electron attachment to the formic acid dimer (FA(2)), is an archetyp...
Author Institution: Yale University, Department of Chemistry, New Haven, CTWe have isolated the stab...
The (HCOOH) 2 anion, formed by electron attachment to the formic acid dimer (FA 2), is an archetypal...
Context. The methyl formate molecule (HCOOCH3) is considered to be a key molecule in astrochemistry....
Following our earlier study on the dynamics of low energy electron attachment to formic acid, we rep...
Gas-phase formation of temporary negative ion states via resonance attachment of low-energy (0-6 eV)...
Formamide (HCONH2) is the smallest molecule with a peptide bond and has recently been observed in th...