Activation of Isocyanates and Carbon Dioxide by a Monomeric Aluminium Hydrazide as an Active Lewis Pair.

Hengesbach F, Jin X, Hepp A, Wibbeling B, Würthwein EU, Uhl W

Research article (journal) | Peer reviewed

Abstract

The monomeric aluminium hydrazide H10 C5 N-N(AltBu2 )Ad (4; Ad=adamantyl, NC5 H10 =piperidinyl) was obtained in high yield by hydroalumination of the corresponding hydrazone derivative 1. Compound 4 has a strained AlN2 heterocycle formed by a donor-acceptor bond between the β-nitrogen atom of the hydrazide group and the aluminium atom. Opening of this bond resulted in the formation of an active Lewis pair that was able to cooperatively activate carbon dioxide or isocyanates. Insertion of the heterocumulenes into the Al-N bond selectively afforded a carbamate and two urea derivatives in high yield. In the first step, phenyl isocyanate gave the adduct 6, which has the oxygen atom coordinated to the aluminium atom and its central carbon atom bound to the nitrogen atom of the piperidine moiety. Adduct 6 represents a reasonable intermediate state for these activation processes. The applicability of hydroaluminated compounds, such as 4, in organic synthesis was demonstrated by the reaction with an imidoyl chloride, which gave the corresponding amidrazone derivative 9.

Details about the publication

JournalChemistry - A European Journal (Chem. Eur. J.)
Volumetba
StatusPublished
Release year2013 (27/08/2013)
Language in which the publication is writtenEnglish
DOI10.1002/chem.201302179
Keywordsactivation; aluminium; carbon dioxide; hydrazines; iso-cyanate

Authors from the University of Münster

Hengesbach, Frank
Institute of Inorganic and Analytical Chemistry
Hepp, Alexander
Professorship of Inorganic Chemistry (Prof. Hahn)
Jin, Xing
Organic Chemistry Institute
Uhl, Werner
Professorship of Inorganic Chemistry (Prof. Uhl)
Würthwein, Ernst-Ulrich
Organic Chemistry Institute