Benzoxazine Oligomers: Evidence for a Helical Structure from Solid-State NMR Spectroscopy and DFT-Based Dynamics and Chemical Shift Calculations
- 22 April 2003
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 125 (19) , 5792-5800
- https://doi.org/10.1021/ja029059r
Abstract
A combination of molecular modeling, DFT calculations, and advanced solid-state NMR experiments is used to elucidate the supramolecular structure of a series of benzoxazine oligomers. Intramolecular hydrogen bonds are characterized and identified as the driving forces for ring-shape and helical conformations of trimeric and tetrameric units. In fast MAS 1H NMR spectra, the resonances of the protons forming the hydrogen bonds can be assigned and used for validating and refining the structure by means of DFT-based geometry optimizations and 1H chemical-shift calculations. Also supporting these proposed structures are homonuclear 1H−1H double-quantum NMR spectra, which identify the local proton−proton proximities in each material. Additionally, quantitative 15N−1H distance measurements obtained by analysis of dipolar spinning sideband patterns confirm the optimized geometry of the tetramer. These results clearly support the predicted helical geometry of the benzoxazine polymer. This geometry, in which the N···H···O and O···H···O hydrogen bonds are protected on the inside of the helix, can account for many of the exemplary chemical properties of the polybenzoxazine materials. The combination of advanced experimental solid-state NMR spectroscopy with computational geometry optimizations, total energy, and NMR spectra calculations is a powerful tool for structural analysis. Its results provide significantly more confidence than the individual measurements or calculations alone, in particular, because the microscopic structure of many disordered systems cannot be elucidated by means of conventional methods due to lack of long-range order.Keywords
This publication has 40 references indexed in Scilit:
- NMR chemical shifts in periodic systems from first principlesComputer Physics Communications, 2002
- Themoreversible Cross-Linking Rubber Using Supramolecular Hydrogen-Bonding NetworksMacromolecules, 2001
- Investigation of an N···H hydrogen bond in a solid benzoxazine dimer by 1H–15N NMR correlation techniques under fast magic‐angle spinningMagnetic Resonance in Chemistry, 2001
- Heteronuclear H1–13C multiple-spin correlation in solid-state nuclear magnetic resonance: Combining rotational-echo double-resonance recoupling and multiple-quantum spectroscopyThe Journal of Chemical Physics, 2001
- An ab initio study of the relation between NMR chemical shifts and solid-state structures: hexabenzocoronene derivativesPhysical Chemistry Chemical Physics, 2000
- Helical Coordination Polymers from Achiral Components in Crystals. Homochiral Crystallization, Homochiral Helix Winding in the Solid State, and Chirality Control by SeedingJournal of the American Chemical Society, 1999
- An Investigation of Hydrogen Bonding in Benzoxazine Dimers by Fast Magic-Angle Spinning and Double-Quantum1H NMR SpectroscopyJournal of the American Chemical Society, 1998
- Synthesis and Characterization of Structurally Uniform Model Oligomers of PolybenzoxazineMacromolecules, 1998
- Crystal Structure and Hydrogen-Bonding Characteristics of N,N-Bis(3,5-dimethyl-2-hydroxybenzyl)methylamine, A Benzoxazine DimerThe Journal of Physical Chemistry, 1996
- A well-behaved electrostatic potential based method using charge restraints for deriving atomic charges: the RESP modelThe Journal of Physical Chemistry, 1993