论文标题
生物启发的纳米复合材料:3D晶格内的2D材料
Bioinspired Nanocomposites: 2D Materials Within a 3D Lattice
论文作者
论文摘要
先进的复合材料用于各种工业应用,因此引起了很多科学兴趣。在这里,我们通过将石墨烯氧化石墨烯掺入方解石的单晶晶格中描述了新型碳基纳米复合材料的形成。将2D有机材料掺入单晶晶格中从未有过报道。为了表征所得的纳米复合材料,我们采用了高分辨率同步粉末X射线衍射,电子显微镜,透射电子显微镜,荧光显微镜和纳米识别测试。详细的分析表明,在方解石宿主中融合的氧化石墨烯片的分层分布。此外,将基于碳的纳米材料引入其晶格时,方解石宿主的光学和机械性能会改变。与纯有组织物相比,复合go-钙岩晶体表现出较低的弹性模量和较高的硬度。这项研究的结果表明,在3D晶体晶格中掺入2D材料不仅是可行的,而且可以导致形成具有新特性的杂化晶体。
Advanced composites are used in a variety of industrial applications and therefore attract much scientific interest. Here we describe the formation of novel carbon-based nanocomposites via incorporation of graphene oxide into the crystal lattice of single crystals of calcite. Incorporation of a 2D organic material into single-crystal lattices has never before been reported. To characterize the resulting nanocomposites we employed high-resolution synchrotron powder X-ray diffraction, electron microscopy, transmission electron microscopy, fluorescence microscopy, and nanoindentation tests. Detailed analysis revealed a layered distribution of graphene oxide sheets incorporated within the calcite host. Moreover, the optical and mechanical properties of the calcite host were altered when a carbon-based nanomaterial was introduced into its lattice. Compared to pure calcite, the composite GO-calcite crystals exhibited lower elastic modulus and higher hardness. The results of this study show that the incorporation of a 2D material within a 3D crystal lattice is not only feasible but also can lead to the formation of hybrid crystals exhibiting new properties.