𝔖 Bobbio Scriptorium
✦   LIBER   ✦

Structures and thermochemistry of ions formed by methane chemical ionization of Fe(CO)5. Site of protonation and determination of FeH and FeCO bond dissociation energies of HFe(CO)n+ ions

✍ Scribed by Dag Ekeberg; Solveig Isaksen Hagen; Georg Hvistendahl; Christian Schulze; Einar Uggerud; John Vedde


Publisher
John Wiley and Sons
Year
1993
Tongue
English
Weight
718 KB
Volume
28
Category
Article
ISSN
1076-5174

No coin nor oath required. For personal study only.

✦ Synopsis


High-energy collisional activation mass spectrometry of HFe(CO), + ions shows that Fe(CO), is protonated on the iron atom rather than on one of the ligands. This finding is supported by ub initio quantum chemical calculations. The value of the proton affinity of Fe(CO), was measured by high-pressure mass spectrometry to be 857 kJ mol-'. The Fe-CO bond dissociation energies for HFe(CO),+ (n = 1-5) were measured by energy-variable low-energy collisional activation mass spectrometry. The Fe-H bond dissociation energies in HFe(CO),, + ions were also determined. A synergistic effect on the strengths of the Fe-H and F A 0 bonds in HFe(CO)+ is noticed. It is demonstrated that the electronically unsaturated species HFe(CO),+ (n = 3, 4) formed in exothermic proton-transfer reactions with Fe(CO), form adducts with CH, . Adducts between C,H, + or C,H, + and Fe(CO), are observed. These adducts are probably formed in direct reactions between the respective carbocations and Fe(CO),