Plassard Cédric, Lesniewska Eric, Pochard Isabelle, Nonat André
Physics Laboratory LPUB, UMR CNRS 5027, University of Bourgogne, F-21078 Dijon, France.
Ultramicroscopy. 2004 Aug;100(3-4):331-8. doi: 10.1016/j.ultramic.2003.11.012.
This work is the first step towards the understanding of the structure of calcium silicate hydrate (C-S-H), the main constituent of cement paste, at the nanoscale. The first demonstration of atomic-resolution imaging of the (C-S-H) surface with an atomic force microscope (AFM) was performed. C-S-H nanoparticles (60 x 30 x 5 nm3) were partially recrystallized by Ostwald ripening after long-term equilibrium in saturated calcium hydroxide solution of different concentration, leading to C-S-H of different calcium/silicon ratio (Ca/Si). The results of atomic resolution made possible the investigation of the C-S-H cell surface parameters. The surface layer structure depended on the calcium hydroxide concentration with which it equilibrated. The change in structural properties perpendicular to the C-S-H layer was probed by modifying AFM for nanoindentation hardness measurements with a depth of indentation as low as 1 nm. The change in elastic modulus depending on the calcium/silicon ratio was evaluated and correlated in the change in structural parameters in this direction as estimated by X-ray diffraction.
这项工作是朝着在纳米尺度上理解硅酸钙水合物(C-S-H)(水泥浆体的主要成分)结构迈出的第一步。首次利用原子力显微镜(AFM)对(C-S-H)表面进行了原子分辨率成像。在不同浓度的饱和氢氧化钙溶液中长时间平衡后,C-S-H纳米颗粒(60×30×5 nm³)通过奥斯特瓦尔德熟化部分重结晶,从而得到不同钙硅比(Ca/Si)的C-S-H。原子分辨率的结果使得对C-S-H晶胞表面参数的研究成为可能。表面层结构取决于与之平衡的氢氧化钙浓度。通过改进AFM以进行纳米压痕硬度测量(压痕深度低至1 nm),探测了垂直于C-S-H层的结构性质变化。根据X射线衍射估计,评估了弹性模量随钙硅比的变化,并将其与该方向上结构参数的变化相关联。