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复合方解石/SWCNT-COOH 单晶的形态和力学特性表征。

Morphological and mechanical characterization of composite calcite/SWCNT-COOH single crystals.

机构信息

Dipartimento di Chimica G. Ciamician, Alma Mater Studiorum Università di Bologna, Via F. Selmi 2, 40126 Bologna, Italy.

出版信息

Nanoscale. 2013 Aug 7;5(15):6944-9. doi: 10.1039/c3nr01568h.

Abstract

A growing number of classes of organic (macro)molecular materials have been trapped into inorganic crystalline hosts, such as calcite single crystals, without significantly disrupting their crystalline lattices. Inclusion of an organic phase plays a key role in enhancing the mechanical properties of the crystals, which are believed to share structural features with biogenic minerals. Here we report the synthesis and mechanical characterization of composite calcite/SWCNT-COOH single crystals. Once entrapped into the crystals SWCNT-COOH appeared both as aggregates of entangled bundles and nanoropes. Their observation was possible only after crystal etching, fracture or FIB (focused ion beam) cross-sectioning. SWCNT-COOHs occupied a small volume fraction and were randomly distributed into the host crystal. They did not strongly affect the crystal morphology. However, although the Young's modulus of composite calcite/SWCNT-COOH single crystals was similar to that of pure calcite their hardness increased by about 20%. Thus, SWCNT-COOHs provide an obstacle against the dislocation-mediated propagation of plastic deformation in the crystalline slip systems, in analogy with the well-known hardness increase in fiber-reinforced composites.

摘要

越来越多的有机(大分子)分子材料被捕获到无机晶体宿主中,例如方解石单晶,而不会显著破坏其晶格。有机相的包含在增强晶体的机械性能方面起着关键作用,这些晶体被认为具有与生物成因矿物相同的结构特征。在这里,我们报告了复合方解石/SWCNT-COOH 单晶的合成和力学特性。SWCNT-COOH 一旦被捕获到晶体中,就会呈现出纠缠束和纳米绳的聚集态。只有在晶体蚀刻、断裂或 FIB(聚焦离子束)截面之后,才能观察到它们。SWCNT-COOH 占据的体积分数较小,并且随机分布在宿主晶体中。它们并没有强烈影响晶体形态。然而,尽管复合方解石/SWCNT-COOH 单晶的杨氏模量与纯方解石相似,但它们的硬度增加了约 20%。因此,SWCNT-COOH 为晶体滑移系统中位错介导的塑性变形的传播提供了障碍,这与纤维增强复合材料中众所周知的硬度增加类似。

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