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Materials by Design—A Perspective From Atoms to Structures

机译:通过设计的材料 - 从原子到结构的透视

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摘要

Biological materials are effectively synthesized, controlled, and used for a variety of purposes—in spite of limitations in energy, quality, and quantity of their building blocks. Whereas the chemical composition of materials in the living world plays a some role in achieving functional properties, the way components are connected at different length scales defines what material properties can be achieved, how they can be altered to meet functional requirements, and how they fail in disease states and other extreme conditions. Recent work has demonstrated this by using large-scale computer simulations to predict materials properties from fundamental molecular principles, combined with experimental work and new mathematical techniques to categorize complex structure-property relationships into a systematic framework. Enabled by such categorization, we discuss opportunities based on the exploitation of concepts from distinct hierarchical systems that share common principles in how function is created, linking music to materials science.
机译:尽管在能源,质量和数量方面存在局限性,生物材料还是可以有效地合成,控制和用于多种目的。生命世界中材料的化学成分在实现功能特性方面起着一定作用,而不同长度尺度上的组件连接方式则定义了可以实现的材料特性,如何更改它们以满足功能要求以及如何失效在疾病状态和其他极端条件下。最近的工作已通过使用大型计算机模拟从基本的分子原理预测材料性能,结合实验工作和新的数学技术将复杂的结构-特性关系分类为系统框架,证明了这一点。在这种分类的支持下,我们基于对不同分层系统中概念的利用来讨论机会,这些分层系统共享如何创建功能的共同原理,将音乐与材料科学联系起来。

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