Synthesis, reactivity, structures, and dynamic properties of gyroscope like iron complexes with dibridgehead diphosphine cages: pre- vs. post-metathesis substitutions as routes to adducts with neutral dipolar Fe(CO)(NO)(X) rotors
Author:
Affiliation:
1. Department of Chemistry
2. Texas A&M University
3. Texas 77842-3012
4. USA
5. Institut für Organische Chemie and Interdisciplinary Center for Molecular Materials
6. Friedrich-Alexander-Universität Erlangen-Nürnberg
7. 91054 Erlangen
8. Germany
Abstract
Substitution reactions of 4c+ BF4− afford the title complexes 9c-X, the Fe(CO)(NO)(X) moieties of which rapidly rotate within the diphosphine cage. Trends are interpreted in terms of horizontal/vertical van der Waals clearance.
Funder
Division of Chemistry
Deutsche Forschungsgemeinschaft
Publisher
Royal Society of Chemistry (RSC)
Subject
Inorganic Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2016/DT/C6DT03258C
Reference58 articles.
1. See http://www.gyroscopes.org/uses.asp
2. Molecular Gyroscopes: {Fe(CO)3} and {Fe(CO)2(NO)}+ Rotators Encased in Three-Spoke Stators; Facile Assembly by Alkene Metatheses
3. Gyroscope-Like Complexes Based on Dibridgehead Diphosphine Cages That Are Accessed by Three-Fold Intramolecular Ring Closing Metatheses and Encase Fe(CO)3, Fe(CO)2(NO)+, and Fe(CO)3(H)+Rotators
4. Gyroscope-like Molecules Consisting of PdX2/PtX2 Rotators Encased in Three-Spoke Stators: Synthesis via Alkene Metathesis, and Facile Substitution and Demetalation
5. Gyroscope-Like Molecules Consisting of PdX2/PtX2Rotators within Three-Spoke Dibridgehead Diphosphine Stators: Syntheses, Substitution Reactions, Structures, and Dynamic Properties
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