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受沙蚕颚启发的金属离子交联用于改善聚合物共混物的机械性能

Ragworm jaw-inspired metal ion cross-linking for improved mechanical properties of polymer blends.

作者信息

Srivastava Aasheesh, Holten-Andersen Niels, Stucky Galen D, Waite J Herbert

机构信息

Materials Research Laboratory, University of California, Santa Barbara, California 93106, USA.

出版信息

Biomacromolecules. 2008 Oct;9(10):2873-80. doi: 10.1021/bm8006659. Epub 2008 Sep 11.

Abstract

Several naturally occurring biomacromolecular structures, particularly those containing histidine-rich proteins, have been shown to depend on metal ion complexation for hardness and stiffness. In this study, water-soluble metal-binding polymers and copolymers based on vinylimidazole were utilized to mimic the glycine- and histidine-rich proteins of ragworm jaws. Blends of these polymers with agarose exhibited a significant capacity for Zn(II) and Cu(II) complexation. Rheological and uniaxial tensile tests as well as nanoindentational analysis of the blends revealed a more than 10-fold improvement in the tensile strength, along with increases in the hardness of the dried samples, upon metal ion addition. Pronounced differences in mechanical effects, however, were associated with Cu(II) and Zn(II) complexation, and the latter provided much better overall mechanical performance.

摘要

几种天然存在的生物大分子结构,特别是那些含有富含组氨酸蛋白质的结构,已被证明其硬度和刚度依赖于金属离子络合作用。在本研究中,基于乙烯基咪唑的水溶性金属结合聚合物和共聚物被用于模拟沙蚕颚中富含甘氨酸和组氨酸的蛋白质。这些聚合物与琼脂糖的共混物表现出显著的锌(II)和铜(II)络合能力。共混物的流变学和单轴拉伸试验以及纳米压痕分析表明,添加金属离子后,拉伸强度提高了10倍以上,干燥样品的硬度也有所增加。然而,机械效应存在明显差异,这与铜(II)和锌(II)的络合有关,并且锌(II)提供了更好的整体机械性能。

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