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Updated: Apr 30, 2026

Preparation and Reactivity of a Triphosphenium Bromide Salt: A Convenient and Stable Source of PhosphorusI
Published on: November 22, 2016
Study of the Ne((3)P2) + CH3F electron-transfer reaction below 1 K
Justin Jankunas1, Benjamin Bertsche, Andreas Osterwalder
1Institute for Chemical Sciences and Engineering, Ecole Polytechnique Fédérale de Lausanne , 1015 Lausanne, Switzerland.
Abstract:
Relatively little is known about the dynamics of electron-transfer reactions at low collision energy. We present a study of Penning ionization of ground-state methyl fluoride molecules by electronically excited neon atoms in the 13 μeV–4.8 meV (150 mK–56 K) collision energy range, using a neutral–neutral merged beam setup. Relative cross sections have been measured for three Ne((3)P2) + CH3F reaction channels by counting the number of CH3F(+), CH2F(+), and CH3(+) product ions as a function of relative velocity between the neon and methyl fluoride molecular beams. Experimental cross sections markedly deviate from the Langevin capture model at collision energies above 20 K. The branching ratios are constant. In other words, the chemical shape of the CH3F molecule, as seen by the Ne((3)P2) atom, appears not to change as the collision energy is varied, in contrast to related Ne((3)PJ) + CH3X (X = Cl and Br) reactions at higher collision energies.
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