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Experimental and computational probes of the space in a self-assembled capsule

机译:自组装胶囊中空间的实验和计算探针

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Self-assembled capsules are hosts that recognize and surround smaller molecule guests of appropriate size, shape, and chemical surfaces. The space available inside is a cage of fixed solvent molecules, many of which are aromatic. These aromatics provide anisotropic shielding to guests, and a map of induced magnetic shielding for the inner space can be obtained through nucleus-independent chemical shift calculations. Experimental values of the magnetic environment can be determined by NMR spectra of the guests inside. We describe here the environment in a cylindrical capsule with tapered ends. A series of terminal acetylenes-the narrowest of organic structures-was synthesized and used to probe the magnetic shielding of the capsule's ends. Their NMR spectra showed that the acetylenic hydrogen experiences deshielding as it is forced deeper into the tapered end of the capsule where four benzene rings converge. Modeling and density functional theory calculations provided excellent agreement with the experimental values and established a molecular ruler to explore steric and magnetic environments inside the capsule.
机译:自组装胶囊是识别并围绕适当大小,形状和化学表面的小分子客体的宿主。内部可用空间是固定溶剂分子的笼子,其中许多是芳族的。这些芳族化合物为客体提供各向异性屏蔽,并且可以通过与核无关的化学位移计算获得内部空间的感应磁屏蔽图。磁性环境的实验值可以通过内部客人的NMR光谱确定。我们在这里描述了带有锥形末端的圆柱形胶囊的环境。合成了一系列末端乙炔-最窄的有机结构-并用于探测胶囊末端的磁屏蔽。他们的NMR谱图表明,炔属氢在被迫更深地进入胶囊的锥形末端(其中四个苯环会聚)时经历了脱屏蔽作用。建模和密度泛函理论计算与实验值非常吻合,并建立了分子尺来探索胶囊内部的空间和磁性环境。

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