Baer E, Hiltner A, Keith H D
Science. 1987 Feb 27;235(4792):1015-22. doi: 10.1126/science.3823866.
The diversity of monomers available for synthesis of high polymers makes it possible to prepare a wide variety of long-chain macromolecular compounds. It is instructive to consider a hierarchical organization of structure in polymers at four successive levels--the molecular, nano-, micro-, and macrolevels--and to examine how interactions at and between these various levels of structure have important and often quite specific influences. Examples are drawn from semicrystalline polymers with flexible chains, liquid-crystalline polymers composed of rigid macromolecules, and amorphous polymers. Structural hierarchies in biocomposite systems are also discussed, particularly in soft connective tissues such as tendon and intervertebral disk.
可用于合成高聚物的单体的多样性使得制备各种各样的长链大分子化合物成为可能。考虑聚合物结构在四个连续层次——分子、纳米、微观和宏观层次——上的层次组织,并研究这些不同结构层次及其之间的相互作用如何产生重要且往往相当特定的影响,这是很有启发性的。例子取自具有柔性链的半结晶聚合物、由刚性大分子组成的液晶聚合物以及无定形聚合物。还讨论了生物复合材料系统中的结构层次,特别是在诸如肌腱和椎间盘等软结缔组织中。