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  5. Spectroscopic Discrimination of Diastereomeric Complexes Involving an Axially Chiral Receptor

Spectroscopic Discrimination of Diastereomeric Complexes Involving an Axially Chiral Receptor

Author(s)
Filippi, Antonello
Fraschetti, Caterina
Guarcini, Laura
Zazza, Costantino  
Ema, Tadashi
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Date Issued
2017
Type
article
Volume
18
Issue
18
Start Page
2475
End Page
2481
DOI
10.1002/cphc.201700732
Journal
CHEMPHYSCHEM  
Abstract
The infrared multiphoton dissociation (IRMPD) spectra of electrospray ionization (ESI)-formed proton-bound complexes between the axially chiral multifunctional macrocycle MaR and d- and l-phenylalanine (PD and PL ) or d- and l-3,4-dihydroxyphenylalanine (DD and DL ) are recorded in the ν˜ =2800-3700 cm-1 region. Whereas the diastereomeric [MaR ⋅H⋅PD ]+ and [MaR ⋅H⋅PL ]+ complexes do not show any significant spectral differences, the spectrum of [MaR ⋅H⋅DD ]+ clearly diverges from that of its [MaR ⋅H⋅DL ]+ diastereomer. A comparison of the experimental spectra with the B3LYP/6-31G**-calculated harmonic vibrational frequencies of a number of stable structures indicates the formation, in the ESI source, of very similar spectroscopically active structures, with the protonated amino acid placed outside the flat cavity of the macrocycle and hydrogen-bonded at its O2 center. Different spectral signatures of the [MaR ⋅H⋅DD ]+ and [MaR ⋅H⋅DL ]+ complexes are attributed to the coexistence of several stable rotamers in the ESI source.
Handle
http://hdl.handle.net/2067/54612
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