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Racemic and Enantiopure Camphene and Pinene Studiedby the Crystalline Sponge Method

机译:研究了外消旋和对映纯的hen烯和Pin烯用结晶海绵法

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摘要

The use of an achiral metal–organic framework for structure determination of chiral compounds is demonstrated for camphene and pinene. The structure of enantiopure β-pinene can be resolved using the crystalline sponge method. However, α-pinene cannot be resolved using enantiopure material alone because no ordering of guest molecules takes place in that case. Interestingly, enantiomeric pairs order inside the channels of the host framework when impure (+)-camphene is offered to the host, which is also the case when a racemic mixture of α-pinene is used. A mixture of (+)-α-pinene and (−)-β-pinene also leads to ordered incorporation in the host, showing the influence of the presence of an inversion center in the host framework. We further show that powder X-ray diffraction provides a direct view on incorporation of ordered guest molecules. This technique, therefore, provides a way to determine the optimal and/or minimal soaking time. In contrast, color change of the crystal only demonstrates guest uptake, not ordering. Moreover, we show thatcolor change can also be caused by guest-induced host degradation.
机译:已证明使用非手性金属-有机骨架来确定手性化合物的结构为camp烯和structure烯。对映体纯β-pine烯的结构可以使用结晶海绵法来解析。但是,不能单独使用对映纯物质来分解α-pine烯,因为在这种情况下不会发生客体分子的有序化。有趣的是,当将不纯的(+)-樟脑提供给宿主时,对映体对在宿主框架的通道内排列,当使用α-pine烯的外消旋混合物时也是如此。 (+)-α-pine烯和(-)-β-pine烯的混合物也导致在宿主中的有序掺入,显示出宿主框架中存在反转中心的影响。我们进一步表明,粉末X射线衍射提供了有序客体分子掺入的直接视图。因此,该技术提供了确定最佳和/或最小均热时间的方式。相比之下,晶体的颜色变化仅表明客人摄取,而不显示有序。此外,我们表明颜色变化也可能是由客座诱导的宿主降解引起的。

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