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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Conformational Control of benzyl-o-carboranylbenzene derivatives and molecular encapsulation of acetone in the dynamically formed space of 1,3,5-Tris(2-benzyl-o-carboran-1-yl)benzene
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Conformational Control of benzyl-o-carboranylbenzene derivatives and molecular encapsulation of acetone in the dynamically formed space of 1,3,5-Tris(2-benzyl-o-carboran-1-yl)benzene

机译:1,3,5-三(2-苄基-邻氨基甲酸酯-1-基)苯的动态形成空间中苄基-邻-碳硼烷基苯衍生物的构象控制和丙酮的分子包封

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摘要

A 1,3,5-substituted benzene platform has been widely used in the fields of supramolecular chemistry and molecular recognition. Here, we show that 1,3,5-tris(2-benzyl-o-carboran-1-yl)benzene 6 exhibits solvent-dependent conformation in the crystalline state. Recrystallization from dichloromethane-n-pentane gave the anti conformation 6-anti, while recrystallization from methanol-acetone gave the syn conformation 6-syn, in which the three benzyl-o-carboranyl moieties are located to one side of the central benzene ring. Interestingly, one acetone molecule is captured in the π-rich space of 6-syn and two complexes facing each other encapsulate two acetone molecules in a π-rich container formed by the eight benzene rings. The inclusion involves several weak interactions, that is, T-shaped C-H?π interactions, and C-H?O and C-H?π interactions. Two C-H?O interactions involving benzylic C-H hydrogens activated by the electron-withdrawing character of the o-carborane cage and the oxygen atom of the acetone seem to be the most important. DFT calculations indicate that the binding energy for entrapment of acetone is 6.6 kcal/mol. Inclusion of acetone is achieved through not only multiple C-H?O interactions but also a number of C-H?π interactions. The third benzyl-o-carborane moiety is fixed in the syn conformation by intramolecular and intermolecular C-H?π interactions.
机译:1,3,5-取代的苯平台已被广泛用于超分子化学和分子识别领域。在这里,我们表明1,3,5-三(2-苄基-邻-甲碳氢基-1-基)苯6在结晶状态下表现出溶剂依赖性构象。从二氯甲烷-正戊烷中重结晶得到反构象6-抗,而从甲醇-丙酮中重结晶得到同构象6-syn,其中三个苄基-o-碳烷基基团位于中心苯环的一侧。有趣的是,一个丙酮分子被捕获在6-syn的π富集空间中,彼此面对的两个络合物将两个丙酮分子封装在由八个苯环形成的π富集容器中。夹杂物涉及几种弱相互作用,即T形C-H 2π相互作用,以及C-H 2 O和C-H2π相互作用。最重要的是两个涉及由苄基C-H氢相互作用的C-H2O相互作用,该苄基C-H氢是由邻-碳环笼的吸电子特性和丙酮的氧原子激活的。 DFT计算表明,截留丙酮的结合能为6.6 kcal / mol。不仅通过多个C-H2O相互作用而且通过许多C-H2π相互作用实现丙酮的包容。第三苄基-邻-碳硼烷部分通过分子内和分子间的C-H2π相互作用固定在顺式构象中。

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