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Molecular structure as a blueprint for supramolecular structure chemistry in confined spaces

机译:分子结构作为密闭空间中超分子结构化学的蓝图

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Chemistry is an ever expanding "universe" at the microscopic level requiring mastery of the invisible at ever increasing levels of complexity. Starting with atoms, assemblies of a single nucleus and orbiting electrons, the chemist has learned to understand atomic structure through mastery of the principles of electronic configurations. Proceeding to molecules, assemblies of two or more atoms, the chemist has learned to understand molecular structure through mastery of the principles of the covalent bond. It is quite natural that the next level of complexity will be supermolecules, assemblies of two or more molecules, whose structure will be understood through mastery of the principles of the intermo-lecular bond, which are at the heart of supramolecular chemistry. We shall see that the principles of weak intermolecular "bonds," while perhaps a bit nonintuitive, obeys the same rules of chemistry as the strong intramolecular covalent bonds. Chemists (and nature) have used < 100 atoms on which they have designed the assembly of millions of molecules by using the concept of the covalent bond between atoms. The number of supramolecular systems that can be assembled is stunning and infinite. A holy grail of supramolecular chemistry is to put the "syntheses" of suprmolecular systems based on intermolecular bonds on the same level of understanding as the current state of the syntheses of molecular systems based on covalent bonds.
机译:化学在微观上是一个不断扩展的“宇宙”,需要以越来越高的复杂度来掌握不可见物质。从原子,单个原子核的集合和绕行的电子开始,化学家已经学会了通过掌握电子结构原理来理解原子结构。在进行分子,两个或两个以上原子的组装的过程中,化学家学会了通过掌握共价键的原理来理解分子结构。很自然,下一个复杂性水平将是超分子,即两个或更多分子的组装,通过掌握分子间键的原理将理解其结构,而分子间键的原理是超分子化学的核心。我们将看到,弱分子间“键”的原理虽然可能有点不直观,但遵循与强分子内共价键相同的化学规则。化学家(和自然界)使用了少于100个原子,并利用原子之间的共价键概念设计了数百万个分子的组装体。可以组装的超分子系统数量惊人且无限。超分子化学的一个圣杯是使基于分子间键的超分子系统的“合成”与基于共价键的分子系统合成的当前状态具有相同的理解水平。

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