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Nanoindentation in Crystal Engineering: Quantifying Mechanical Properties of Molecular Crystals

机译:晶体工程中的纳米压痕:量化分子晶体的机械性能

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摘要

N anoindentation is a technique for measuring the elastic modulus and hardness of small amounts of materials. This method, which has been used extensively for characterizing metallic and inorganic solids, is now being applied to organic and metal-organic crystals, and has also become relevant to the subject of crystal engineering, which is concerned with the design of molecular solids with desired properties and functions. Through nanoindentation it is possible to correlate molecular-level properties such as crystal packing, interaction characteristics, and the inherent anisotropy with micro/macroscopic events such as desolvation, domain coexistence, layer migration, polymorphism, and solid-state reactivity. Recent developments and exciting opportunities in this area are highlighted in this Minireview.
机译:纳米压痕是一种用于测量少量材料的弹性模量和硬度的技术。该方法已被广泛用于表征金属和无机固体,现在已应用于有机和金属有机晶体,并且也与晶体工程有关,该工程与分子固体的设计有关。属性和功能。通过纳米压痕,可以将分子水平的特性(如晶体堆积,相互作用特性和固有的各向异性)与微观/宏观事件(如去溶剂化,畴共存,层迁移,多态性和固态反应性)相关联。该Minireview重点介绍了该领域的最新发展和令人兴奋的机会。

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