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Physical Achirality In Geometrically Chiral Rotamers Of Hydrazine And Boranylborane Molecules

JOURNAL OF COMPUTATIONAL CHEMISTRY(2021)

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摘要
The diagonal components and the trace of tensors which account for chiroptical response of the hydrazine molecule N2H4, that is, static anapole magnetizability and frequency-dependent electric dipole-magnetic dipole polarisability, are a function of the phi equivalent to angle HNNH dihedral angle. They vanish for symmetry reasons at phi = 0 degrees and phi = 180 degrees, corresponding respectively to C-2v and C-2h point group symmetries, that is, cis and trans conformers characterized by the presence of molecular symmetry planes. Nonetheless, vanishing diagonal components have been observed also in the proximity of angle HNNH = 90 degrees, in which the point group symmetry is C-2 and hydrazine is unquestionably chiral. In the boranylborane molecule B2H4, assuming the BB bond in the y direction, the a(yy) component of the anapole magnetizability tensor approximately vanishes for dihedral angles angle HBBH corresponding to chiral rotamers which belong to D-2 symmetry. Such anomalous effects have been ascribed to physical achirality of these conformers, that is, to their inability to sustain electronic current densities inducing either anapole moments, or electric and magnetic dipole moments, about the chiral axis connecting heavier atoms, as well as perpendicular directions. In other terms, the structure of certain geometrically chiral rotamers may be such that neither toroidal nor helical flow, which determine chiroptical phenomenology, can take place in the presence of perturbing fields parallel or orthogonal to the chiral axis.
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关键词
anapole moment, chemical chirality, geometrical chirality, optical activity, physical achirality
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