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A crystalline sponge based on dispersive forces suitable for X-ray structure determination of included molecular guests

机译:基于色散力的结晶海绵适用于确定所含分子客体的X射线结构

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摘要

A crystalline porous material showing one-dimensional (1-D) rectangular micropores (12 × 9 Å2) has been assembled from a semirigid macrocyclic tetraimine and EtOAc as the templating agent. The 1-D nature of the material is intrinsic to the conformationally rigid structure of a macrocyclic sub-unit bearing four cyclohexylidene residues. The multiple dispersive forces established among the aliphatic residues glutted the 1-D channels and provided thermal stability to the material at temperatures below 160 °C. Upon removal of the template, the structure of the empty solid exhibited permanent microporosity (S BET = 342 m2 g–1). Being a true molecular sponge, the channel framework of this material allowed the inclusion of a variety of molecular sample guests without compromising its crystalline nature. Remarkably, this crystalline material enabled the structure determination by X-ray diffraction of the included molecules. Theoretical studies demonstrated the vital role played by the dispersive forces in the overall stabilization of the crystal packing.
机译:由半刚性大环四亚胺和EtOAc作为模板剂组装了具有一维(1-D)矩形微孔(12×9Å 2 )的结晶多孔材料。材料的一维性质是带有四个亚环己基残基的大环亚单元的构象刚性结构所固有的。在脂族残基之间建立的多重分散力使1-D通道发生凝集,并在低于160°C的温度下为材料提供热稳定性。去除模板后,空固体的结构表现出永久的微孔性(S BET = 342 m 2 g –1 )。作为一种真正的分子海绵,这种材料的通道框架允许在不影响其晶体性质的情况下包含各种分子样品。显着地,该结晶材料使得能够通过X射线衍射对所包括的分子进行结构确定。理论研究表明,分散力在晶体堆积的总体稳定中起着至关重要的作用。

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