首页> 外文期刊>The Journal of Organic Chemistry >Encapsulated Guests in the Smallest Spaces: Shrinking Guests by Compression and Investigations under Solvent-Free Conditions
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Encapsulated Guests in the Smallest Spaces: Shrinking Guests by Compression and Investigations under Solvent-Free Conditions

机译:最小空间中的包裹客人:在无溶剂条件下通过压缩和调查使客人收缩

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摘要

Noncovalent interactions play a pivotal role in a variety of biological and chemical processes. The experimental determination and quantum chemical calculations of the forces driving these interactions are of utmost importance. Of special interest are interactions of molecules in small spaces which show phenomena different from conventional behavior in solution. An extension is the encapsulation of guests in smallest spaces: The guests are too large to be included under standard conditions and hence must be forced to intrude into the cavity. Here, we show the design of such a host guest system which allows to directly compare the measured thermodynamic values to gas-phase quantum chemical calculations. Structural investigation of the complexes reveals that the encapsulation process causes not only an extension of the hollow space of the host but also a shrinking of the included guest by compression.
机译:非共价相互作用在各种生物和化学过程中起着关键作用。驱动这些相互作用的力的实验确定和量子化学计算至关重要。特别令人感兴趣的是小空间中分子的相互作用,这种相互作用显示出与溶液中常规行为不同的现象。扩展是将客体封装在最小的空间中:客体太大,无法在标准条件下包括在内,因此必须被迫侵入空腔。在这里,我们展示了这种主机系统的设计,该系统可以将测得的热力学值直接与气相量子化学计算进行比较。对复合物的结构研究表明,封装过程不仅导致主体中空空间的扩展,而且还通过压缩导致所包含客体的收缩。

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