The homoleptic sandwich anion [Co(P2C2tBu2)2]-: a versatile building block for phosphaorganometallic chemistry
Files
Publication date
2008
Editors
Advisors
Supervisors
DOI
Document Type
Article
Metadata
Show full item recordCollections
License
Abstract
Phosphaalkynes (RC=P) are valuable starting materials for a wide range of low-coordinate phosphorus compounds.[1] Similar to alkynes,[2] these reactive, triply-bonded molecules oligomerize in the coordination sphere of transition metals to give diphosphacyclobutadienes, triphosphabenzenes, or higher oligomers.[1, 3] The reactions of phosphaalkynes with “vaporized” metal atoms are particularly intriguing, as illustrated by the reaction of cobalt atoms with tBuC=P which affords a mixture of three complexes (A–C) that are difficult to prepare by conventional synthetic methods.[4] Although fascinating compounds can be obtained by metal vapor (MV) synthesis,[5, 6] its applicability is limited due to the low product yields and the need for a special experimental setup.
Keywords
Citation
Wolf, R, Ehlers, A W, Slootweg, J C, Lutz, M, Gudat, D, Hunger, M, Spek, A L & Lammertsma, K 2008, 'The homoleptic sandwich anion [Co(P2C2tBu2)2]-: a versatile building block for phosphaorganometallic chemistry', Angewandte Chemie-International Edition, vol. 47, pp. 4584-4587.