Rotational spectra of tetracyclic quinolizidine alkaloids: does a water molecule flip sparteine?

PHYSICAL CHEMISTRY CHEMICAL PHYSICS(2017)

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摘要
Sparteine is a quinolizidine alkaloid used as a chiral auxiliary in asymmetric synthesis. We examine whether hydration by a single molecule can flip sparteine from the most stable trans conformation to the bidentate cis arrangement observed in catalytic complexation to a metal center. Sparteine and the sparteine-water dimer were generated in a supersonic jet expansion with (H2O)-O-16 and (H2O)-O-18, and characterized by broadband chirped-pulse microwave spectroscopy. Even though the bidentate water dimer was predicted with larger binding energy, a single isomer was observed for the monohydrated cluster, with sparteine retaining the trans conformation observed for the free molecule. The absence of the bidentate dimer is attributed to the kinetic control of cluster formation, favoring the pre-expansion most abundant monomer. The structural properties of the O-H center dot center dot center dot N hydrogen bond in the dimer are compared with those of complexes of other secondary and tertiary amines.
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Rotational Spectroscopy
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