| Literature DB >> 32896062 |
Fan Xie1, Marco Fusè2, Arsh S Hazrah1, Wolfgang Jäger1, Vincenzo Barone2, Yunjie Xu1.
Abstract
The chirality controlled conformational landscape of the trimer of propylene oxide (PO), a prototypical chiral molecule, was investigated using rotational spectroscopy and a range of theoretical tools for conformational searches and for evaluating vibrational contributions to effective structures. Two sets of homochiral (PO)3 rotational transitions were assigned and the associated conformers identified with theoretical support. One set of heterochiral (PO)3 transitions was assigned, but no structures generated by one of the latest, advanced conformational search codes could account for them. With the aid of a Python program, the carbon atom backbone and then the heterochiral (PO)3 structure were generated using 13 C isotopic data. Excellent agreement between theoretical and experimental rotational constants and relative dipole moment components of all three conformers was achieved, especially after applying vibrational corrections to the rotational constants.Entities:
Keywords: conformational panorama; isotopic substitution; propylene oxide; rotational spectroscopy; semi-experimental equilibrium structures
Year: 2020 PMID: 32896062 PMCID: PMC7984290 DOI: 10.1002/anie.202010055
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336