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Mastering fundamentals of supramolecular design with carboxylic acids. Common lessons from X-ray crystallography and scanning tunneling microscopy

机译:掌握羧酸的超分子设计原理。 X射线晶体学和扫描隧道显微镜的常见课程

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摘要

Hydrogen bonding is one of the most important non-covalent interactions in both biological (DNA, peptides, saccharides etc.) and artificial systems (various soft materials, host-guest architectures, molecular networks, etc.). Carboxylic acids are some of the most simple yet powerful hydrogen-bonding building blocks, that possess a particularly rich supramolecular chemistry. This tutorial review focuses on the structural diversity of supramolecular architectures accessible via hydrogen bonding of carboxylic acids, as observed both in single crystals using X-ray analysis and in monolayers on surfaces using scanning probe techniques. It provides a concise overview of the key concepts and principles of modern supramolecular design and is given in the form of case studies of finely selected literature examples, covering formation of macrocycles, chains, ladders, rotaxanes, catenanes, various 2D and 3D nets, host-guest systems and some applications thereof.
机译:氢键是生物学(DNA,肽,糖等)和人工系统(各种软材料,客体结构,分子网络等)中最重要的非共价相互作用之一。羧酸是最简单但功能强大的氢键构成基团,具有特别丰富的超分子化学性质。本教程的重点是通过羧酸的氢键可实现的超分子结构的结构多样性,这在使用X射线分析的单晶中和使用扫描探针技术的表面单层中均可以观察到。它提供了现代超分子设计的关键概念和原理的简要概述,并以精选文献实例的案例研究形式给出,涵盖了大环,链,梯子,轮烷,链烷,各种2D和3D网络,宿主的形成访客系统及其一些应用程序。

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