| Literature DB >> 24897021 |
Shuang Zheng1, Ming-Liang Chang2, Jing Zhou3, Jing-Wei Fu4, Qing-Wei Zhang5, Shao-Yong Li6, Wei Qiao7, Jun-Min Liu8.
Abstract
For all microhelices on aromatic rings of inherently chiral calix[4]arene, an expression was derived from one approximation and one hypothesis on the basis of the electron-on-a-helix model of Tinoco and Woody as follows: 1/E = μ(H - KΔα2), where μ = 1 for the right-handed microhelix and μ = -1 for the left-handed microhelix; and H and K are constant and greater than zero. The expression correlates microhelical electronic energy (E) with the atom polarizability difference (Δα) on both microhelix ends, which intuitively and clearly shows the impact of helical substituent polarizability on helical electronic energy. The case analysis almost entirely proves that the qualitative analysis of the helical electronic energy of inherently chiral calix[4]arenes with the expression is scientific and can be used to effectively assign their absolute configuration.Entities:
Mesh:
Substances:
Year: 2014 PMID: 24897021 PMCID: PMC4100125 DOI: 10.3390/ijms15069844
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 5.923
Figure 1Structural analysis of inherently chiral Calix[4]arene and representative inherently chiral Calix[4]arene (−)-1. inherently chiral Calix[4]arene model (a); macrocyclic skeleton helix (b); bridging carbon helix (c); phenyl ring helix (d); geometrical helix model of inherently chiral Calix[4]arene model (e) and geometrical helix model of (−)-1 (f).
The dihedral angles and six pairs of exterior angles on phenyl ring A1 of (−)-1.
The distances between dummy atoms and bridging carbons and three pairs of angles in the geometrical helix model of (−)-1.
Figure 2Helical character analysis of microhelix X–a–b–Y in inherently chiral Calix[4]arene. inherently chiral Calix[4]arene model (a); complex planar chiral model of aromatic ring A1 (b); helical character analysis of aromatic ring A1 (c); different electron movement of bond Xa, ab and bY (d); electron movement of bond bY relative to xy plane when α < α (e); electron movement of bond bY relative to xy plane when α > α (f); right-handed cylindrical microhelix model when α < α (g) and left-handed cylindrical microhelix model when α > α (h).
Figure 3Inherently chiral Calix[4]arenes, whose absolute configuration and optical rotation sign have been ascertained.