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Synthesis, characterization and crystal structures of boron-containing intermediates in the reductive amination of ferrocenecarboxaldehyde to a bis(ferrocenylmethyl) amine

Producción científica: Articlerevisión exhaustiva

15 Citas (Scopus)

Resumen

Reaction of ferrocenecarboxaldehyde with aqueous methylamine leads to [(methylimino)methyl]ferrocene, which is reduced to N-(ferrocenylmethyl)-N-methylamine by NaBH4. This amine reacts with ferrocenecarboxaldehyde and NaCNBH3 to give the tertiary ammonium salt, di(N-(ferrocenylmethyl))-N-methylammonium cyanoborohydride. Hydrolysis of the NaCNBH3 reaction mixture produces the free amine, di(N-(ferrocenylmethyl))-N-methylamine. Thermolysis of di(N-(ferrocenylmethyl))-N-methylammonium cyanoborohydride in refluxing tetrahydrofuran converts it to the cyanoborane adduct, di(N-ferrocenylmethyl)-N-methylamine-cyanoborane, with elimination of H2. The new compounds are fully characterized by using spectroscopic and physical methods, including X-ray crystal structure determinations of di(N-(ferrocenylmethyl))-N-methylammonium cyanoborohydride, di(N-(ferrocenylmethyl))-N-methylamine, and di(N-(ferrocenylmethyl))-N-methylamine-cyanoborane.

Idioma originalEnglish
Páginas (desde-hasta)791-800
Número de páginas10
PublicaciónJournal of Organometallic Chemistry
Volumen692
N.º4
DOI
EstadoPublished - ene 15 2007

Nota bibliográfica

Funding Information:
We thank the Research Corporation and the University of Kentucky Research Challenge Trust Fund for support. Appendix A

Financiación

We thank the Research Corporation and the University of Kentucky Research Challenge Trust Fund for support. Appendix A

Financiadores
University of Kentucky Research Challenge Trust Fund
Research Corporation for Science Advancement

    ASJC Scopus subject areas

    • Biochemistry
    • Physical and Theoretical Chemistry
    • Organic Chemistry
    • Inorganic Chemistry
    • Materials Chemistry

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