The reaction of the methyl cation with hydrogen cyanide is revisited. We have confidence that we have resolved a long standing apparent contradiction of experimental results. A literature history is presented along with one new experiment and a re-examination of an old experiment. In this present work it is shown that all of the previous studies had made consistent observations. Yet, each of the previous studies failed to observe all of the information present. The methyl cation does react with HCN by radiative association, a fact which had been in doubt. The product ions formed in the two-body and three-body processes react differently with HCN. The collisionally stabilized association product formed by a three-body mechanism, does not rea...
Equilibrium thermochemical measurements using the ion mobility drift cell technique have been utiliz...
AbstractResults of a Fourier transform-ion cyclotron resonance study are reported concerning the rea...
The CBS-QB3 model chemistry predicts that the title ion-molecule reaction, of potential interest in ...
甲基陽離子(methyl cation),CH3+,及HNO,H2CNH,H2CO的離子-分子縮合反 應(ion-molecule condensation reacti...
AbstractThe ion–molecule reactivity of the products formed in the association reactions of HCNH+ wit...
A modified version of the selected ion flow tube is descri bed Its application to the study of the r...
A low temperature radio-frequency 22-pole ion trap has been combined with a molecular beam for study...
The Selected Ion Flow Tube technique requires a mass spectrometer to select the mass of the ion stud...
Context. Hydrogenation reactions dominate grain surface chemistry in dense molecular clouds and lead...
Using ion-trapping techniques, selected laboratory experiments on ion-molecule reactions of astrophy...
International audienceContext. Hydrogenation reactions dominate grain surface chemistry in dense mol...
International audienceThe reaction of C3N- with acetylene was studied using three different experime...
International audienceWe review the reactions involving HCN and HNC in dark molecular clouds to eluc...
Methyl cyanide (CH$_3$CN) is one of the most abundant and widely spread interstellar complex organic...
The reactivity, energetics and dynamics of bimolecular reactions between CH2CN2+ and three neutral s...
Equilibrium thermochemical measurements using the ion mobility drift cell technique have been utiliz...
AbstractResults of a Fourier transform-ion cyclotron resonance study are reported concerning the rea...
The CBS-QB3 model chemistry predicts that the title ion-molecule reaction, of potential interest in ...
甲基陽離子(methyl cation),CH3+,及HNO,H2CNH,H2CO的離子-分子縮合反 應(ion-molecule condensation reacti...
AbstractThe ion–molecule reactivity of the products formed in the association reactions of HCNH+ wit...
A modified version of the selected ion flow tube is descri bed Its application to the study of the r...
A low temperature radio-frequency 22-pole ion trap has been combined with a molecular beam for study...
The Selected Ion Flow Tube technique requires a mass spectrometer to select the mass of the ion stud...
Context. Hydrogenation reactions dominate grain surface chemistry in dense molecular clouds and lead...
Using ion-trapping techniques, selected laboratory experiments on ion-molecule reactions of astrophy...
International audienceContext. Hydrogenation reactions dominate grain surface chemistry in dense mol...
International audienceThe reaction of C3N- with acetylene was studied using three different experime...
International audienceWe review the reactions involving HCN and HNC in dark molecular clouds to eluc...
Methyl cyanide (CH$_3$CN) is one of the most abundant and widely spread interstellar complex organic...
The reactivity, energetics and dynamics of bimolecular reactions between CH2CN2+ and three neutral s...
Equilibrium thermochemical measurements using the ion mobility drift cell technique have been utiliz...
AbstractResults of a Fourier transform-ion cyclotron resonance study are reported concerning the rea...
The CBS-QB3 model chemistry predicts that the title ion-molecule reaction, of potential interest in ...