Laboratoire de Chimie, École Normale Supérieure de Lyon, CNRS, UCBL, 46 Allée d'Italie, F-69364 Lyon, France.
J Am Chem Soc. 2013 Dec 11;135(49):18659-64. doi: 10.1021/ja409444s. Epub 2013 Nov 22.
Endohedral functionalization of the molecular cavity of host molecules is in high demand in many areas of supramolecular chemistry. When highly reactive species are incarcerated in the confined space of a molecular cavity, deep changes of their chemical properties are expected. Here, we show that the superbasic properties of proazaphosphatranes can be improved in the confined space of the molecular cavity of hemicryptophane hosts. A general and modular procedure is described to prepare supramolecular superbases with various cavity sizes. The rate of proton transfer is strongly dependent on the shape and size of the inner cavity of the designed superbasic structure. Kinetic and thermodynamic data are strongly correlated to the space available around the basic center as revealed by the X-ray molecular structures analyses.
主体分子的笼状功能化在超分子化学的许多领域都有很高的需求。当高反应性物质被囚禁在分子笼的受限空间中时,预计它们的化学性质会发生深刻的变化。在这里,我们表明,前氮磷杂环戊烷的超强碱性可以在半穴醚主体分子笼的受限空间中得到改善。描述了一种通用的和模块化的方法来制备具有各种空腔尺寸的超分子超强碱。质子转移的速率强烈依赖于所设计的超碱性结构的内空腔的形状和尺寸。动力学和热力学数据与基本中心周围可用空间强烈相关,这一点可以通过 X 射线分子结构分析揭示。