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磷或氮——配位聚合物化学中的首个磷三蝶烯

Phosphorus or nitrogen - the first phosphatriptycene in coordination polymer chemistry.

作者信息

Gildenast Hans, Gruszien Lukas, Friedt Felix, Englert Ulli

机构信息

RWTH Aachen University, Institute of Inorganic Chemistry, Landoltweg 1, 52074 Aachen, Germany.

Key Laboratory of Materials for Energy Conversion and Storage, Institute of Molecular Science, Shanxi University, Taiyuan, Shanxi 030006, People's Republic of China.

出版信息

Dalton Trans. 2022 May 24;51(20):7828-7837. doi: 10.1039/d2dt00728b.

Abstract

Phosphasilatriptycene, a phenylene spacer and a pyridyl moiety represent the building blocks of TRIP-Py, the first heteroditopic ligand featuring a phoshatriptycene scaffold. The P and N donor sites located at opposite ends of the prolate TRIP-Py molecule selectively coordinate metal cations matching their Pearson character. The harder pyridyl donor binds to Zn, the softer phosphorus donor to Pt, Hg and Au. The remarkably short Au-P bond in the latter underlines the good π acceptor character of the phoshatriptycene moiety. When both the chloride salts of hard Zn and soft Au cations are available for coordination, TRIP-Py acts as selective ditopic linker in the discrete trinuclear mixed-metal complex [ZnCl(TRIP-PyAuCl)]. For Cd, a cation with intermediate Pearson character, selectivity withers, and a monometallic coordination polymer is obtained. Its significantly elongated Cd-P coordinative bonds underline, however, the preference of Cd for the harder N donor. When Zn and Hg halides are combined, their preference for the matching donor sites in TRIP-Py and for tetrahedral coordination afford 1D and 2D heterobimetallic polymers with and without solvent-accessible voids. TRIP-Py enables the use of two important analytical tools: its rigidity facilitates crystallization and allowed to investigate 14 crystalline solids, and its P donor provides a powerful NMR probe for coordination.

摘要

磷硅三蝶烯、一个亚苯基间隔基和一个吡啶基部分是TRIP-Py的构建单元,TRIP-Py是首个具有磷硅三蝶烯骨架的异双齿配体。位于扁长形TRIP-Py分子两端的P和N供体位点选择性地配位与其皮尔逊特性相匹配的金属阳离子。较硬的吡啶基供体与锌结合,较软的磷供体与铂、汞和金结合。后者中显著短的金-磷键突出了磷硅三蝶烯部分良好的π受体特性。当硬锌阳离子和软金阳离子的氯化物盐都可用于配位时,TRIP-Py在离散的三核混合金属配合物[ZnCl(TRIP-PyAuCl)]中充当选择性双齿连接体。对于具有中等皮尔逊特性的镉阳离子,选择性消失,得到一种单金属配位聚合物。然而,其显著拉长的镉-磷配位键突出了镉对较硬的氮供体的偏好。当锌和汞的卤化物结合时,它们对TRIP-Py中匹配供体位点的偏好以及对四面体配位的偏好产生了有和没有溶剂可及空隙的一维和二维异双金属聚合物。TRIP-Py使得能够使用两种重要的分析工具:其刚性促进结晶并使得能够研究14种晶体固体,并且其磷供体为配位提供了一个强大的核磁共振探针。

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