金属配合作为制造弹性编织材料的模板策略

Yuzhong Liu, O. Yaghi
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引用次数: 2

摘要

金属配位作为一种模板策略在超分子化学领域得到了广泛的应用。通过金属络合将分子组分预组织成所需的取向,允许以高产率设计合成互锁分子。合成化学家从此学会了将离散的分子实体交织成纠缠的结构,其复杂性越来越高,仅受想象力的限制。这种模板策略最近已经在制造编织扩展结构中得到了实施。通过连接包含金属络合物核心的构建单元,可以构建二维和三维(2D和3D)框架,其中共价连接的分子以规则的间隔交织并由金属离子模板化。脱金属后,螺纹具有很高的自由度,可以在它们之间发生空间偏差,同时保持整体结构,赋予材料非凡的机械性能和动力学性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Metal coordination as a template strategy to make resilient woven materials
Metal coordination has been used extensively as a template strategy in the field of supramolecular chemistry. Preorganization of molecular components into a desirable orientation by metal complexation has allowed for the designed synthesis of interlocking molecules in high yields. Synthetic chemists have since learned to intertwine discrete molecular entities into entangled architectures with increasing complexity limited only by imagination. This template strategy has recently been implemented in the making woven extended structures. By linking building units that contain a metal complex core, twoand three-dimensional (2D and 3D) frameworks can be constructed where long threads of covalently linked molecules that are interwoven at regular intervals and templated by the metal ions. Upon demetalation, the threads have high degrees of freedom for spatial deviation to take place between them while preserving the overall structure, endowing the material with exceptional mechanical properties and dynamics.
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