Isomerenabhängige, thermische Aktivierung von Methan durch [HMO]+und [M(OH)]+(M=Ti und V) in der Gasphase
Author:
Funder
DFG
VCI
Publisher
Wiley
Subject
General Medicine
Link
http://onlinelibrary.wiley.com/wol1/doi/10.1002/ange.201300900/fullpdf
Reference125 articles.
1. Methane Functionalization
2. Activation of Small Molecules
3. Catalytic Oxy-Functionalization of Methane and Other Hydrocarbons: Fundamental Advancements and New Strategies
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1. Metal-Dependent Strengthening and Weakening of M−H and M−C Bonds by an Oxo Ligand: Thermal Gas-Phase Activation of Methane by [OMH]+ and [MH]+ (M=Mo, Ti);Chemistry - A European Journal;2017-06-21
2. On the Origin of the Remarkably Variable Reactivities of [AlCeO x ]+ (x= 2- 4) towards Methane as a Function of Oxygen Content;Angewandte Chemie International Edition;2016-12-02
3. Ursachen der unterschiedlichen Reaktivität von [AlCeO x ] + ( x= 2 – 4) gegenüber Methan in Abhängigkeit vom Sauerstoffgehalt;Angewandte Chemie;2016-12-02
4. Efficient Room-Temperature Methane Activation by the Closed-Shell, Metal-Free Cluster [OSiOH]+ : A Novel Mechanistic Variant;Chemistry - A European Journal;2016-08-12
5. On the Activation of Methane and Carbon Dioxide by [HTaO]+ and [TaOH]+ in the Gas Phase: A Mechanistic Study;Chemistry - A European Journal;2016-06-29
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