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Meldola lecture: understanding the properties of urea and thiourea inclusion compounds

机译:Meldola讲座:了解尿素和硫脲夹杂物的特性

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Much of the intrinsic appeal of structural science arises from the fact that structural behaviour at the molecular level often resembles macroscopic structures that we can see in the world around us. In the same way that we perceive beauty in the symmetries and forms of macroscopic objects, there is an equally enthralling beauty in the way that nature fashions symmetry and diversity within the architectures of crystalline solids. In the field of inclusion chemistry, for example, many direct analogies can be drawn between the concepts of inclusion in the microscopic and macroscopic worlds, but the scientific interest and importance of inclusion chemistry extends far beyond such structural comparisons. As this article demonstrates, solid organic inclusion compounds can exhibit a diversity of interesting and important fundamental properties, which can form the basis of a range of important applications.
机译:结构科学的许多内在吸引力源于以下事实:在分子水平上的结构行为通常类似于我们在周围世界中看到的宏观结构。与我们在宏观物体的对称和形式中感知美感的方式相同,自然界在结晶固体的体系结构中具有对称性和多样性的方式同样具有令人着迷的美感。例如,在夹杂化学领域,可以在微观和宏观世界中找到许多直接的类比概念,但是夹杂化学的科学兴趣和重要性远远超出了这种结构比较。如本文所示,固体有机夹杂物可以表现出多种有趣而重要的基本特性,这些特性可以构成一系列重要应用的基础。

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