The activation reactions of methane mediated by metal carbide ions MC3+ (M = Ir and Pt) were comparatively studied at room temperature using the techniques of mass spectrometry in conjunction with theoretical calculations. MC3+ (M = Ir and Pt) ions reacted with CH4 at room temperature forming MC2H2+/C2H2 and MC4H2+/H2 as the major products for both systems. Besides that, PtC3+ could abstract a hydrogen atom from CH4 to generate PtC3H+/CH3, while IrC3+ could not. Quantum chemical calculations showed that the MC3+ (M = Ir and Pt) ions have a linear M-C-C-C structure. The first C–H activation took place on the Ir atom for IrC3+. The terminal carbon atom was the reactive site for the first C–H bond activation of PtC3+, which was beneficial to g...
The chemical inertness of C(sp<sup>3</sup>)–H bonds has made their functionalization difficult, esp...
Contains fulltext : 253677.pdf (Publisher’s version ) (Open Access)19 mei 202
Methane activation by transition metals is of fundamental interest and practical importance, as this...
Mechanistic aspects of the C–H bond activation of methane by metal-carbide cations MC+ of the 3d tra...
The mechanism of ligated-transition-metal- [MH<sup>+</sup> (M = Os, Ir, and Pt)] catalyzed methane a...
The activation of methane by gas-phase transition metal cations (M +) has been studied extensively, ...
The activation of methane by gas-phase transition metal cations (M+) has been studied extensively, b...
The activation of methane by gas-phase transition metal cations (M +) has been studied extensively, ...
The sequential activation of up to 4 CH_4 molecules by Ir^+ is investigated through a gas-phase infr...
The sequential activation of up to 4 CH_4 molecules by Ir^+ is investigated through a gas-phase infr...
Ir^+ has been observed as the most efficient transition-metal ion for dehydrogenation of CH_4 in the...
Ir^+ has been observed as the most efficient transition-metal ion for dehydrogenation of CH_4 in the...
The sequential activation of up to 4 CH_4 molecules by Ir^+ is investigated through a gas-phase infr...
Contains fulltext : 199912.pdf (preprint version ) (Open Access
The chemical inertness of C(sp<sup>3</sup>)–H bonds has made their functionalization difficult, esp...
The chemical inertness of C(sp<sup>3</sup>)–H bonds has made their functionalization difficult, esp...
Contains fulltext : 253677.pdf (Publisher’s version ) (Open Access)19 mei 202
Methane activation by transition metals is of fundamental interest and practical importance, as this...
Mechanistic aspects of the C–H bond activation of methane by metal-carbide cations MC+ of the 3d tra...
The mechanism of ligated-transition-metal- [MH<sup>+</sup> (M = Os, Ir, and Pt)] catalyzed methane a...
The activation of methane by gas-phase transition metal cations (M +) has been studied extensively, ...
The activation of methane by gas-phase transition metal cations (M+) has been studied extensively, b...
The activation of methane by gas-phase transition metal cations (M +) has been studied extensively, ...
The sequential activation of up to 4 CH_4 molecules by Ir^+ is investigated through a gas-phase infr...
The sequential activation of up to 4 CH_4 molecules by Ir^+ is investigated through a gas-phase infr...
Ir^+ has been observed as the most efficient transition-metal ion for dehydrogenation of CH_4 in the...
Ir^+ has been observed as the most efficient transition-metal ion for dehydrogenation of CH_4 in the...
The sequential activation of up to 4 CH_4 molecules by Ir^+ is investigated through a gas-phase infr...
Contains fulltext : 199912.pdf (preprint version ) (Open Access
The chemical inertness of C(sp<sup>3</sup>)–H bonds has made their functionalization difficult, esp...
The chemical inertness of C(sp<sup>3</sup>)–H bonds has made their functionalization difficult, esp...
Contains fulltext : 253677.pdf (Publisher’s version ) (Open Access)19 mei 202
Methane activation by transition metals is of fundamental interest and practical importance, as this...