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卤化物杂质催化形成基于配位的自组装体。

Catalytic Formation of Coordination-Based Self-Assemblies by Halide Impurities.

作者信息

Bobylev Eduard O, de Bruin Bas, Reek Joost N H

机构信息

van 't Hoff Institute for Molecular Sciences, University of Amsterdam, Science Park 904, 1098 XH Amsterdam, The Netherlands.

出版信息

Inorg Chem. 2021 Aug 16;60(16):12498-12505. doi: 10.1021/acs.inorgchem.1c01714. Epub 2021 Jul 30.

Abstract

The dynamics of metal organic polyhedra (MOP) play a crucial role for their application in catalysis and host-guest chemistry and as functional materials. In this contribution, we study the influence of possible contaminations of different metal precursors on the kinetic properties of MOP. Exemplary five different MOP are studied with metal precursors of varying quality. The metal precursors are either obtained from commercial sources or prepared by various literature procedures. Studies into the self-assembly process using H NMR and MS analyses were performed on PtL, PdL, PdL, PdL, and NiL assemblies. Commonly found impurities are shown to play a prominent role guiding selective formation of MOP, as they allow for an escape from otherwise kinetically trapped intermediates. The energy requirement for selective sphere formation is significantly lowered in many examples providing evidence for a catalytic role of halide impurities/additives in the self-assembly process. Furthermore, even though most analytical features such as H NMR and MS analyses show identical results for assemblies with different types of metal precursors, the dynamics of formed assemblies differs significantly if slightly less pure starting materials are used. Tiny amounts of halide contaminations make the MOP more dynamic, which can play an important role for substrate diffusion especially if bulky substrates are used. We believe that this study on the influence of impurities (which were shown to be present in some commercial sources) on the kinetic properties of MOP together with procedures of obtaining high purity metal precursors provides important information for future material preparation and provides a better understanding of already known examples.

摘要

金属有机多面体(MOP)的动力学对于其在催化、主客体化学以及作为功能材料等方面的应用起着至关重要的作用。在本论文中,我们研究了不同金属前驱体中可能存在的杂质对MOP动力学性质的影响。以五种不同的MOP为例,研究了质量各异的金属前驱体。这些金属前驱体要么购自商业来源,要么按照各种文献方法制备。利用核磁共振氢谱(H NMR)和质谱(MS)分析对PtL、PdL、PdL、PdL和NiL组装体的自组装过程进行了研究。结果表明,常见的杂质在引导MOP的选择性形成中起着显著作用,因为它们能使体系从原本动力学捕获的中间体中逃逸出来。在许多实例中,选择性球体形成所需的能量显著降低,这为卤化物杂质/添加剂在自组装过程中的催化作用提供了证据。此外,尽管诸如H NMR和MS分析等大多数分析特征对于不同类型金属前驱体制备的组装体显示出相同的结果,但如果使用纯度稍低的起始原料,所形成组装体的动力学则会有显著差异。微量的卤化物杂质会使MOP更具动态性,这对于底物扩散可能起着重要作用,尤其是在使用体积较大的底物时。我们认为,这项关于杂质(已证实在某些商业来源中存在)对MOP动力学性质影响的研究,连同获得高纯度金属前驱体的方法,为未来的材料制备提供了重要信息,并有助于更好地理解已有的实例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0930/8397307/e3172295e910/ic1c01714_0002.jpg

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