Pokroy Boaz, Quintana John P, Caspi El'ad N, Berner Alex, Zolotoyabko Emil
Department of Materials Engineering, Technion-Israel Institute of Technology, Haifa 32000, Israel.
Nat Mater. 2004 Dec;3(12):900-2. doi: 10.1038/nmat1263. Epub 2004 Nov 14.
Composite biogenic materials produced by organisms have a complicated design on a nanometre scale. An outstanding example of organic-inorganic composites is provided by mollusc seashells, whose superior mechanical properties are due to their multi-level crystalline hierarchy and the presence of a small amount (0.1-5 wt%) of organic molecules. The presence of organic molecules, among other characteristics, can influence the coherence length for X-ray scattering in biogenic crystals. Here we show the results of synchrotron high-resolution X-ray powder diffraction measurements in biogenic and non-biogenic (geological) aragonite crystals. On applying the Rietveld refinement procedure to the high-resolution diffraction spectra, we were able to extract the aragonite lattice parameters with an accuracy of 10 p.p.m. As a result, we found anisotropic lattice distortions in biogenic aragonite relative to the geological sample, maximum distortion being 0.1% along the c axis of the orthorhombic unit cell. The organic molecules could be a source of these structural distortions in biogenic crystals. This finding may be important to the general understanding of the biomineralization process and the development of bio-inspired 'smart' materials.
生物体产生的复合生物材料在纳米尺度上具有复杂的结构。软体动物的贝壳就是有机-无机复合材料的一个杰出例子,其卓越的力学性能归因于其多级晶体结构以及少量(0.1-5 wt%)有机分子的存在。有机分子的存在,除了其他特性外,还会影响生物晶体中X射线散射的相干长度。在此,我们展示了对生物成因和非生物成因(地质成因)文石晶体进行同步加速器高分辨率X射线粉末衍射测量的结果。将Rietveld精修程序应用于高分辨率衍射光谱时,我们能够以10 ppm的精度提取文石晶格参数。结果,我们发现相对于地质样品,生物成因文石存在各向异性的晶格畸变,沿正交晶胞的c轴方向最大畸变率为0.1%。有机分子可能是生物晶体中这些结构畸变的来源。这一发现对于全面理解生物矿化过程以及开发受生物启发的“智能”材料可能具有重要意义。