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1,1'-联萘熔融结晶中的手性对称性破缺与多晶型现象

Chiral symmetry breaking and polymorphism in 1,1'-binaphthyl melt crystallization.

作者信息

Sainz-Díaz C Ignacio, Martín-Islan Africa P, Cartwright Julyan H E

机构信息

Laboratorio de Estudios Cristalográficos, Instituto Andaluz de Ciencias de la Tierra (CSIC)-Edificio BIC Granada, Avenida de la Innovacion, 1, P.T. Ciencias de la Salud, E-18100 Armilla, Granada, Spain.

出版信息

J Phys Chem B. 2005 Oct 13;109(40):18758-64. doi: 10.1021/jp0518198.

Abstract

We have studied chiral symmetry breaking in the melt crystallization of 1,1'-binaphthyl. We confirm that chiral symmetry breaking can be induced by stirring the melt as it crystallizes. We find an additional process of vapor crystallization to occur alongside the melt crystallization. This complicates the analysis of the enantiomorphism by introducing a further phenomenon: that of polymorphism. Crystallographic studies by X-ray diffraction reveal two polymorphs of 1,1'-binaphthyl that are made up of two different conformers of each of the two enantiomeric forms of the molecule. Crystals from the melt are generally chiral tetragonal crystals (P42(1)2(1)) composed of (R)- or (S)-1,1'-binaphthyl in a transoid conformer, while those from the vapor are racemic monoclinic crystals (C2/c) made up of the cisoid conformer of both (R)- and (S)-1,1'-binaphthyl enantiomers. The main intermolecular interactions in all these crystals are weak aromatic CH/pi hydrogen bonds, which are responsible for the enantiomeric discrimination in the molecular recognition during crystallization. A tendency for whisker crystal formation is notable in 1,1'-binaphthyl. In stirred crystallization, fluid and mechanical forces can break off these whiskers, which provide secondary nuclei for further crystallization. This autocatalytic mechanism induces chiral symmetry breaking during the crystallization.

摘要

我们研究了1,1'-联萘在熔融结晶过程中的手性对称性破缺。我们证实,在熔体结晶时搅拌熔体可诱导手性对称性破缺。我们发现,在熔体结晶的同时还会发生气相结晶的额外过程。这通过引入另一种现象——多晶型现象,使对映异构的分析变得复杂。通过X射线衍射进行的晶体学研究揭示了1,1'-联萘的两种多晶型,它们由该分子的两种对映体形式各自的两种不同构象组成。熔体结晶形成的晶体通常是手性四方晶体(P42(1)2(1)),由反式构象的(R)-或(S)-1,1'-联萘组成,而气相结晶形成的晶体是外消旋单斜晶体(C2/c),由(R)-和(S)-1,1'-联萘对映体的顺式构象组成。所有这些晶体中的主要分子间相互作用是弱芳香族CH/π氢键,这在结晶过程中的分子识别中导致了对映体识别。1,1'-联萘中明显存在晶须晶体形成的趋势。在搅拌结晶过程中,流体和机械力会折断这些晶须,这些晶须为进一步结晶提供二次晶核。这种自催化机制在结晶过程中诱导了手性对称性破缺。

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