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From the Cover: Self-fulfilling cavitands: Packing alkyl chains into small spaces

机译:从封面开始:自我实现的空洞:将烷基链堆积在狭小的空间中

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摘要

The present research was undertaken to determine the conformations of alkyl groups that are forced into small spaces. Unbranched alkyl groups assume fully extended conformations in the free space of solutions, because any bends in the structure create steric clashes between hydrogens along the chain. We synthesized a series of alkyl esters of a carboxylic acid attached to the inner surface of a vase-shaped container structure. The shorter esters (ethyl and propyl) can be accommodated in extended conformations, and even small solvent molecules can share the container’s space. Longer (butyl-octyl) esters adopt increasingly coiled conformations that writhe rapidly in the limited space of the cavity. Even longer esters (nonyl and decyl) can be synthesized, but their containers become distorted, and their spectra indicate slowed internal motions of the alkyl groups within the space. In general, alkyl groups are readily contorted when their internal strains are compensated by attraction with the inner surfaces and the proper filling of space.
机译:进行本研究以确定被迫进入小空间的烷基的构象。无支链的烷基在溶液的自由空间中假定具有完全延伸的构象,因为结构中的任何弯曲都会在沿着链的氢之间产生空间碰撞。我们合成了一系列附着在花瓶形容器结构内表面上的羧酸烷基酯。较短的酯(乙酯和丙酯)可以扩展构型容纳,甚至小的溶剂分子也可以共享容器的空间。较长的(丁辛基)酯采用越来越多的螺旋构象,可在空腔的有限空间中迅速旋转。甚至可以合成更长的酯(壬基和癸基),但是它们的容器会变形,它们的光谱表明空间中烷基的内部运动变慢。通常,当烷基的内部应变通过与内表面的吸引力和适当的空间填充而得到补偿时,烷基很容易扭曲。

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