Literature DB >> 21274954

Oligonuclear ferrocene amides: mixed-valent peptides and potential redox-switchable foldamers.

Daniel Siebler1, Michael Linseis, Teuta Gasi, Luca M Carrella, Rainer F Winter, Christoph Förster, Katja Heinze.   

Abstract

Trinuclear ferrocene tris-amides were synthesized from an Fmoc- or Boc-protected ferrocene amino acid, and hydrogen-bonded zigzag conformations were determined by NMR spectroscopy, molecular modelling, and X-ray diffraction. In these ordered secondary structures orientation of the individual amide dipole moments approximately in the same direction results in a macrodipole moment similar to that of α-helices composed of α-amino acids. Unlike ordinary α-amino acids, the building blocks in these ferrocene amides with defined secondary structure can be sequentially oxidized to mono-, di-, and trications. Singly and doubly charged mixed-valent cations were probed experimentally by Vis/NIR, paramagnetic ¹H NMR and Mössbauer spectroscopy and investigated theoretically by DFT calculations. According to the appearance of intervalence charge transfer (IVCT) bands in solution, the ferrocene/ferrocenium amides are described as Robin-Day class II mixed-valent systems. Mössbauer spectroscopy indicates trapped valences in the solid state. The secondary structure of trinuclear ferrocene tris-amides remains intact (coiled form) upon oxidation to mono- and dications according to DFT calculations, while oxidation to the trication should break the intramolecular hydrogen bonding and unfold the ferrocene peptide (uncoiled form).

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Year:  2011        PMID: 21274954     DOI: 10.1002/chem.201002101

Source DB:  PubMed          Journal:  Chemistry        ISSN: 0947-6539            Impact factor:   5.236


  2 in total

1.  Phosphaalkenylidene bridged ferrocenes.

Authors:  Andreas Orthaber; Rolfe H Herber; Rudolf Pietschnig
Journal:  J Organomet Chem       Date:  2012-11-15       Impact factor: 2.369

2.  Polysubstituted ferrocenes as tunable redox mediators.

Authors:  Sven D Waniek; Jan Klett; Christoph Förster; Katja Heinze
Journal:  Beilstein J Org Chem       Date:  2018-05-07       Impact factor: 2.883

  2 in total

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