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Design Principles of Peptide Based Self-Assembled Nanomaterials

机译:基于肽的自组装纳米材料设计原理

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Abstract The ability to design functionalized peptide nanostructures for specific applications is tied to the ability of controlling the morphologies of the self-assembled superstructures. That, in turn, is based on a thorough understanding of the structural and environmental factors affecting self-assembly. The aim of designing self-assembling nanostructures of controlled geometries is achieved via a combination of directional and non-directional second order interactions. If the interactions are distributed in a geometrically defined way, a specific and selective supramolecu-lar self-assembly motif is the result. In this chapter we detail the role of non-covalent interactions on the self-assembly of peptides; we will also discuss different types of peptide building blocks and design rules for engineering unnatural supramolecular structures.
机译:摘要为特定应用设计官能化肽纳米结构的能力与控制自组装上层建筑的形态的能力相关联。 反过来,基于对影响自组装的结构和环境因素的彻底了解。 通过方向和非定向二阶相互作用的组合实现设计受控几何形状的自组装纳米结构的目的。 如果相互作用以几何定义方式分布,则结果是特定和选择性的Supramolecu-LAR自组装基序。 在本章中,我们详细介绍了非共价相互作用对肽自组装的作用; 我们还将讨论不同类型的工程不自然的超分子结构的肽构建块和设计规则。

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