A new fundamental type of conformational isomerism

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作者
Peter J. Canfield
Iain M. Blake
Zheng-Li Cai
Ian J. Luck
Elmars Krausz
Rika Kobayashi
Jeffrey R. Reimers
Maxwell J. Crossley
机构
[1] Shanghai University,International Centre for Quantum and Molecular Structures and School of Physics
[2] The University of Sydney,School of Chemistry
[3] OraInnova,Research School of Chemistry
[4] Australian National University,National Computational Infrastructure
[5] Australian National University,School of Mathematical and Physical Sciences
[6] University of Technology Sydney,undefined
来源
Nature Chemistry | 2018年 / 10卷
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摘要
Isomerism is a fundamental chemical concept, reflecting the fact that the arrangement of atoms in a molecular entity has a profound influence on its chemical and physical properties. Here we describe a previously unclassified fundamental form of conformational isomerism through four resolved stereoisomers of a transoid (BF)O(BF)-quinoxalinoporphyrin. These comprise two pairs of enantiomers that manifest structural relationships not describable within existing IUPAC nomenclature and terminology. They undergo thermal diastereomeric interconversion over a barrier of 104 ± 2 kJ mol−1, which we term ‘akamptisomerization’. Feasible interconversion processes between conceivable synthesis products and reaction intermediates were mapped out by density functional theory calculations, identifying bond-angle inversion (BAI) at a singly bonded atom as the reaction mechanism. We also introduce the necessary BAI stereodescriptors parvo and amplo. Based on an extended polytope formalism of molecular structure and stereoisomerization, BAI-driven akamptisomerization is shown to be the final fundamental type of conformational isomerization.
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页码:615 / 624
页数:9
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