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Self-sorting of two imine-based metal complexes: balancing kinetics and thermodynamics in constitutional dynamic networks

机译:两种基于亚胺的金属综合体的自我排序:宪法动态网络中的平衡动力学和热力学

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摘要

A major hurdle in the development of complex constitutional dynamic networks (CDNs) is the lack of strategies to simultaneously control the output of two (or more) interconnected dynamic processes over several species, namely reversible covalent imine bond formation and dynamic metal-ligand coordination. We have studied in detail the self-sorting process of 11 constitutional dynamic libraries containing two different amines, aldehydes and metal salts into two imine-based metal complexes, having no overlap in terms of their compositions. This study allowed us to determine the factors influencing the fidelity of this process (concentration, electronic and steric parameters of the organic components, and nature of the metal cations). In all 11 systems, the outcome of the process was primarily determined by the ability of the octahedral metal ion to select its pair of components from the initial pool of components, with the composition of the weaker tetrahedral complex being imposed by the components rejected by the octahedral metal ions. Different octahedral metal ions required different levels of precision in the "assembling instructions" provided by the organic components of the CDN to guide it towards a sorted output. The concentration of the reaction mixture, and the electronic and steric properties of the initial components of the library were all found to influence the lifetime of unwanted metastable intermediates formed during the assembling of the two complexes.
机译:复杂宪法动态网络(CDN)发展的主要障碍是缺乏同时控制两种(或更多)互联的动态过程的输出的策略,即可逆的共价亚胺键形成和动态金属 - 配体配位。我们已经详细研究了11个含有两种不同胺,醛和金属盐的11个构成动态文库中的自分拣过程,分为两种基于亚胺的金属配合物,在其组合物方面没有重叠。本研究允许我们确定影响该过程的保真度的因素(浓度,电子和有机组分的特性,以及金属阳离子的性质)。在所有11个系统中,该方法的结果主要通过八面体金属离子从初始组分池中选择其组分的能力决定,其组成较弱的四面体复合物被被拒绝的部件施加八面体金属离子。不同的八面体金属离子在CDN的有机组分提供的“组装说明”中需要不同的精度等级,以将其引导朝向分选输出。所有文库的初始组分的反应混合物的浓度和电子和空间性质均发现,影响在两个配合物组装过程中形成的不需要的亚稳中间体的寿命。

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  • 来源
    《Chemical science》 |2020年第4期|共8页
  • 作者单位

    Karlsruhe Inst Technol Inst Nanotechnol D-76344 Eggenstein Leopoldshafen Germany;

    Karlsruhe Inst Technol Inst Nanotechnol D-76344 Eggenstein Leopoldshafen Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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