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首页> 外文期刊>Journal of Renewable Materials >Self-assembly Mechanisms in Plant Cell Wall Components
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Self-assembly Mechanisms in Plant Cell Wall Components

机译:植物细胞壁部件中的自组装机制

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This review on self-assembly in biological fibrous composites presents theory and simulation to elucidate the principles and mechanisms that govern the thermodynamics, material science, and rheology of biological anisotropic soft matter that are involved in the growth/self-assembly/material processing of these materials. Plant cell wall, a multi-layered biological fibrous composite, is presented as a model biological system to investigate self-assembly mechanisms in nature's material synthesis. In order to demonstrate the universality of the presented models and the mechanisms investigated, references to other biological/ biomimetic systems are made when applicable. The integration of soft matter physics theories and models with actual biological data for plant cell walls provides a foundation for understanding growth, form, and function in biological material and offers a firm platform for biomimetic innovation.
机译:对生物纤维复合材料的自组装进行了本综述,阐明了治理生物各向异性软件的热力学,材料科学和流变学的理论和模拟,这些原理和机制涉及这些生物各向异性软件的生物各向异性/材料加工 材料。 植物细胞壁,一种多层生物纤维复合材料,作为模型生物系统,以研究自然材料合成中的自组装机制。 为了证明所提出的模型的普遍性和所研究的机制,适用时对其他生物/仿生系统的参考。 柔软物理学理论和模型的整合具有植物细胞壁的实际生物数据为理解生物材料中的生长,形式和功能提供了基础,为仿生创新提供了坚定的平台。

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