| Article ID | Journal | Published Year | Pages | File Type |
|---|---|---|---|---|
| 1323349 | Journal of Organometallic Chemistry | 2008 | 4 Pages |
Abstract
A new synthetic route is described to generate the 4-centre-5 electron donor ring system (P3C2tBu2BuH), via protonation of the lithium salts [LiFe(η4-P2C2tBu2PBu)(η5-C5R5)] (R = H, Me). The molecular structure of [Fe(η4-P3C2tBu2BuH)(η5-C5R5)] (R = Me) has been determined by a single crystal X-ray study.
Graphical abstractA new synthetic route is described to generate the 4-centre-5 electron donor ring system (P3C2tBu2BuH), via protonation of the lithium salts [LiFe(η4-P2C2tBu2PBu)(η5-C5R5)] (R = H, Me). The molecular structure of [Fe(η4-P3C2tBu2BuH) (η5-C5R5)] (R = Me) has been determined by a single crystal X-ray study.Figure optionsDownload full-size imageDownload as PowerPoint slide
Keywords
Related Topics
Physical Sciences and Engineering
Chemistry
Inorganic Chemistry
Authors
Mahmoud M. Al-Ktaifani, Peter B. Hitchcock, John F. Nixon,
![First Page Preview: Protonation of the lithio derivatives of the 1,2,4-tri-phosphaferrocenes, [LiFe(η4-P2C2tBu2PBu)(η5-C5R5)] (R = H, Me): Crystal and molecular structure of [Fe(η4-P3C2tBu2BuH)(η5-C5Me5)] Protonation of the lithio derivatives of the 1,2,4-tri-phosphaferrocenes, [LiFe(η4-P2C2tBu2PBu)(η5-C5R5)] (R = H, Me): Crystal and molecular structure of [Fe(η4-P3C2tBu2BuH)(η5-C5Me5)]](/preview/png/1323349.png)