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在金刚烷与氮杂环丁烷之间:与新型三(高金刚烷)环系相关的笼状膦中的桥内相互作用。

Between Adamantane and Atrane: Intrabridgehead Interactions in the Cage-Like Phosphane Related to a Novel Tris(homoadamantane) Ring System.

作者信息

Britvin Sergey N, Rumyantsev Andrey M, Zobnina Anastasia E, Padkina Marina V

机构信息

Department of Crystallography, Saint Petersburg State University, Universitetskaya Nab. 7/9, 199034, St. Petersburg, Russia.

Department of Genetics and Biotechnology, Saint Petersburg State University, Universitetskaya Nab. 7/9, 199034, St. Petersburg, Russia.

出版信息

Chemistry. 2016 Sep 26;22(40):14227-35. doi: 10.1002/chem.201601637. Epub 2016 Aug 17.

Abstract

Herein, we report unusual four-center interactions in the novel cage-like phosphane, 1,4,7-triaza-9-phosphatricyclo[5.3.2.1(4,9) ]tridecane (CAP). This water-soluble ligand, the first example of a tris(homoadamantane) ring system, can be considered a macrocyclic homologue of the well-known PTA (1,3,5-triaza-7-phosphaadamantane). However, (31) P NMR spectroscopic anomalies of CAP follow those typical for the bi-/tricyclic atrane systems. Another atrane-like feature of CAP is the ability of one nitrogen atom to undergo out-in pyramidal inversion. The latter is associated with a substantial decrease in the intracage N-N and P-N distances. Analysis of electron density distribution [molecular electrostatic potential (MESP) and atoms-in-molecules (AIM) approaches] suggests that the P and N atoms in the pyramidally inverted CAP derivatives are involved in interactions resulting in accumulation of electron density at the center of the phosphane cage. The latter can reliably explain the stereoelectronic and NMR anomalies of the new ligand. The semi-flexible CAP cage populates the structural niche between the rigid adamantine skeleton of PTA and flexible atrane systems and can be regarded as an alternative to PTA in aqueous coordination chemistry.

摘要

在此,我们报道了新型笼状膦烷1,4,7-三氮杂-9-磷杂三环[5.3.2.1(4,9)]十三烷(CAP)中不同寻常的四中心相互作用。这种水溶性配体是三(高金刚烷)环系统的首个实例,可被视为著名的PTA(1,3,5-三氮杂-7-磷杂金刚烷)的大环同系物。然而,CAP的(31)P NMR光谱异常遵循双环/三环阿特拉烷系统的典型特征。CAP的另一个阿特拉烷样特征是一个氮原子能够进行内外锥形翻转。后者与笼内N-N和P-N距离的显著减小有关。电子密度分布分析[分子静电势(MESP)和分子中的原子(AIM)方法]表明,锥形翻转的CAP衍生物中的P和N原子参与了相互作用,导致膦烷笼中心的电子密度积累。后者可以可靠地解释新配体的立体电子和NMR异常。半柔性的CAP笼填补了PTA的刚性金刚烷骨架和柔性阿特拉烷系统之间的结构空白,在水相配位化学中可被视为PTA的替代品。

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