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首页> 外文期刊>Bulletin of Japan Society of Coordination Chemistry >Molecular Self-Assembly Based on Coordination Chemistry
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Molecular Self-Assembly Based on Coordination Chemistry

机译:基于配位化学的分子自组装

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Molecular self-assembly has recently undergone on explosive development, making possible the synthesis of many fascinating and complex structures using only relatively simple procedures. Over the last two decades, we have been showing that the simple combination of palladium's square planer geometry (a 90 degree coordination angle) with pyridine-based bridging ligands gives rise to the quantitative self-assembly of nano-sized, discrete organic frameworks. Representative and early examples in this field include square molecules (1990), linked-ring molecules (1994), cages (1995), tubes (1999), capsules (1999), and spheres (2004) that are self-assembled from simple and small components. By networking the discreet frameworks, we have also developed porous coordination networks (1994). In this article, we will disclose the structure of these self-assemblies as well as the chemistry of self-assembled “space” created in the void of the assemblies, where new chemical and physical properties of enclosed molecules are exhibited.
机译:分子自组装最近经历了爆炸性的发展,使得仅使用相对简单的程序就可以合成许多引人入胜的复杂结构。在过去的二十年中,我们已经表明,钯的方形平面几何形状(90度配角)与吡啶基桥联配体的简单结合可产生纳米级,离散的有机骨架的定量自组装。该领域的代表性和早期实例包括由简单分子和自体分子自组装而成的正方形分子(1990),链环分子(1994),笼子(1995),管(1999),胶囊(1999)和球(2004)。小零件。通过将谨慎的框架联网,我们还开发了多孔协调网络(1994年)。在本文中,我们将披露这些自组装体的结构以及在组装体空隙中产生的自组装“空间”的化学性质,其中展示了封闭分子的新化学和物理性质。

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