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协调计量比对组胺和咪唑-M 配合物结合层次的影响。

Coordination Stoichiometry Effects on the Binding Hierarchy of Histamine and Imidazole-M Complexes.

机构信息

Department of Materials Science and Engineering, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA, 02139, USA.

Laboratory for Atomistic and Molecular Mechanics (LAMM), Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA, 02139, USA.

出版信息

Macromol Rapid Commun. 2023 Sep;44(17):e2300077. doi: 10.1002/marc.202300077. Epub 2023 Jul 5.

Abstract

Histidine-M coordination bonds are a recognized bond motif in biogenic materials with high hardness and extensibility, which has led to growing interest in their use in soft materials for mechanical function. However, the effect of different metal ions on the stability of the coordination complex remains poorly understood, complicating their implementation in metal-coordinated polymer materials. Herein, rheology experiments and density functional theory calculations are used to characterize the stability of coordination complexes and establish the binding hierarchy of histamine and imidazole with Ni , Cu , and Zn . It is found that the binding hierarchy is driven by the specific affinity of the metal ions to different coordination states, which can be macroscopically tuned by changing the metal-to-ligand stoichiometry of the metal-coordinated network. These findings facilitate the rational selection of metal ions for optimizing the mechanical properties of metal-coordinated materials.

摘要

组氨酸-M 配位键是生物材料中具有高硬度和高延展性的一种公认的键结构,这使得人们对其在机械功能软材料中的应用越来越感兴趣。然而,不同金属离子对配位络合物稳定性的影响仍知之甚少,这使得它们在金属配位聚合物材料中的应用变得复杂。在此,流变学实验和密度泛函理论计算被用来表征配位络合物的稳定性,并建立组氨酸和咪唑与 Ni、Cu 和 Zn 形成配位络合物的结合顺序。研究发现,结合顺序是由金属离子对不同配位状态的特定亲和力驱动的,通过改变金属配位网络的金属与配体的化学计量比,可以在宏观上对其进行调节。这些发现有助于为优化金属配位材料的机械性能而合理选择金属离子。

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