Iminoboranes With Parent B=NH Entity: Imino Group Metathesis, Nucleophilic Reactivity and N−N Coupling

Author:

Dolati Hadi1,Denker Lars1,Martínez Juan Pablo2,Trzaskowski Bartosz2,Frank René1ORCID

Affiliation:

1. Institute of Inorganic and Analytical Chemistry Technische Universität Braunschweig Hagenring 30 38106 Braunschweig Germany

2. Centre of New Technologies University of Warsaw Banacha 2 C 02-097 Warszawa Poland

Abstract

AbstractWhile R2C=N−R double bonds in organic imines are well established, the related iminoboranes R‐B=N−R are either prone to oligomerization or can only be stabilized at sufficient steric congestion. In particular, the examples of unsubstituted parent B=N‐H entity are rare. We demonstrate that the amino imidazoline‐2‐imine ligand system (HAmIm) not only gives rise to the isolation of a parent (AmIm)B=N−H iminoborane, but also to species of type (AmIm)B=N‐SiMe3 with concomitant stabilization by lithium bromide. The double bond character in these systems is unambiguously corroborated by DFT calculations. The steric accessibility of the (AmIm)B=NH unit allows facile reactivity including metathesis reactions with C=O and C=S bonds, nucleophilic addition toward organic and organometallic carbonyl compounds, but also oxidative N−N coupling within a dimeric unit. Thus, the chemical behavior of the (AmIm)B=N−H and (AmIm)B=N‐SiMe3 is distinctly different from that of organic imines.

Publisher

Wiley

Subject

General Chemistry,Catalysis,Organic Chemistry

Reference91 articles.

1. Beyer/Walter Organische Chemie Vol. 25 (Eds.: T. Schirmeister C. Schmuck P. R. Wich) S. Hirzel Stuttgart Leipzig 2015 pp. 317–343.

2. The term “iminoborane” addresses species of type RB=NR (or RB≡NR) in which R represents an X-type substituent. The Lewis acidic boron or the Lewis basic nitrogen center may be coordinated by L- or Z-type ligands respectively. “Iminoboranes” should not be confused with “aminoboranes” of type R2B-NR2with only partial B−N double bond character.

3. Selected examples for species with B=O bonds:

4. Synthesis and Characterization of a Coordinated Oxoborane:  Lewis Acid Stabilization of a Boron−Oxygen Double Bond

5. Comparison of Anionic and Lewis Acid Stabilized N‐Heterocyclic Oxoboranes: Their Facile Synthesis from a Borinic Acid

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