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Broad-Range Spectral Analysis for Chiral Metal Coordination Compounds: (Chiro)optical Superspectrum of Cobalt(II) Complexes.
Pescitelli, Gennaro; Lüdeke, Steffen; Chamayou, Anne-Christine; Marolt, Marija; Justus, Viktor; Górecki, Marcin; Arrico, Lorenzo; Di Bari, Lorenzo; Islam, Mohammad Ariful; Gruber, Irina; Enamullah, Mohammed; Janiak, Christoph.
Afiliación
  • Pescitelli G; Department of Chemistry and Industrial Chemistry , University of Pisa , 56126 Pisa , Italy.
  • Lüdeke S; Institute of Pharmaceutical Sciences , University of Freiburg , D-79104 Freiburg , Germany.
  • Chamayou AC; Institute of Pharmaceutical Sciences , University of Freiburg , D-79104 Freiburg , Germany.
  • Marolt M; Institute of Pharmaceutical Sciences , University of Freiburg , D-79104 Freiburg , Germany.
  • Justus V; Institute of Pharmaceutical Sciences , University of Freiburg , D-79104 Freiburg , Germany.
  • Górecki M; Department of Chemistry and Industrial Chemistry , University of Pisa , 56126 Pisa , Italy.
  • Arrico L; Institute of Organic Chemistry , Polish Academy of Sciences , 01-224 Warsaw , Poland.
  • Di Bari L; Department of Chemistry and Industrial Chemistry , University of Pisa , 56126 Pisa , Italy.
  • Islam MA; Department of Chemistry and Industrial Chemistry , University of Pisa , 56126 Pisa , Italy.
  • Gruber I; Department of Chemistry , Jahangirnagar University , Dhaka - 1342 , Bangladesh.
  • Enamullah M; Institute of Inorganic Chemistry and Structural Chemistry , University of Düsseldorf , D-40225 Düsseldorf , Germany.
  • Janiak C; Department of Chemistry , Jahangirnagar University , Dhaka - 1342 , Bangladesh.
Inorg Chem ; 57(21): 13397-13408, 2018 Nov 05.
Article en En | MEDLINE | ID: mdl-30339376
ABSTRACT
Chiroptical broad-range spectral analysis extending from UV to mid-IR was employed to study a family of Co(II) N-(1-(aryl)ethyl)salicylaldiminato Schiff base complexes with pseudotetrahedral geometry associated with chirality-at-metal of the Δ/Λ type. While common chiral organic compounds have well-separated absorption and circular dichroism spectra (CD) in the UV/vis and IR regions, chiral Co(II) complexes feature an almost unique continuum of absorption and CD bands, which cover in sequence the UV, visible, near-IR (NIR), and IR regions of the electromagnetic spectrum. They can be collected in a single (chiro)optical superspectrum ranging from the UV (230 nm, 5.4 eV) to the mid-IR (1000 cm-1, 0.12 eV), which offers a fingerprint of the structure and stereochemistry of the metal complexes. Each region of the superspectrum contributes to one piece of information the NIR-CD region, in combination with TDDFT calculations, allows a reliable assignment of the metal-centered chirality; the UV-CD region facilitates the analysis of the Δ/Λ diastereomeric equilibrium in solution; and the IR-VCD region contains a combination of low-lying metal-centered electronic states (LLES) and ligand-centered vibrations and displays characteristically enhanced and monosignate VCD bands. Circular dichroism in the NIR and IR regions is crucial to reveal the presence of d-d transitions of the Co(II) core which, due to the electric-dipole forbidden character, would be otherwise overlooked in the corresponding absorption spectra.

Texto completo: 1 Bases de datos: MEDLINE Idioma: En Revista: Inorg Chem Año: 2018 Tipo del documento: Article País de afiliación: Italia

Texto completo: 1 Bases de datos: MEDLINE Idioma: En Revista: Inorg Chem Año: 2018 Tipo del documento: Article País de afiliación: Italia