Coordination chemistry of Fe+, (c-C5H5)Fe+, and (c-C5H5)2Fe+ in the gas phase at room temperature: kinetics of sequential ligation with hydrogen cyanide and cyanoacetylene
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,Spectroscopy,Condensed Matter Physics,Instrumentation
Reference23 articles.
1. Intrinsic Coordination Properties of Iron in FeO+: Kinetics at 294 .+-. 3 K for Gas-Phase Reactions of the Ground States of Fe+ and FeO+ with Inorganic Ligands Containing Hydrogen, Nitrogen, and Oxygen
2. Dinitrogen addition to c-C5H5Fe+, C6H6Fe+ and FeO+ in the gas phase
3. Activation of hydrogen and methane by thermalized FeO+ in the gas phase as studied by multiple mass spectrometric techniques
4. Intrinsic Coordination Properties of Iron: Gas-Phase Ligation of Ground-State Fe+ with Alkanes, Alkenes, and Alkynes and Intramolecular Interligand Interactions Mediated by Fe+
5. Sequential Ligation of Mg+, Fe+, (c-C5H5)Mg+, and (c-C5H5)Fe+ with Ammonia in the Gas Phase: Transition from Coordination to Solvation in the Sequential Ligation of Mg+
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