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Structure of nanocrystalline calcium silicate hydrates: insights from X-ray diffraction synchrotron X-ray absorption and nuclear magnetic resonance

机译:纳米晶硅酸钙水合物的结构:X射线衍射同步加速器X射线吸收和核磁共振的见解

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摘要

The structure of nanocrystalline calcium silicate hydrates (C–S–H) having Ca/Si ratios ranging between 0.57 ± 0.05 and 1.47 ± 0.04 was studied using an electron probe micro-analyser, powder X-ray diffraction, 29Si magic angle spinning NMR, and Fourier-transform infrared and synchrotron X-ray absorption spectroscopies. All samples can be described as nanocrystalline and defective tobermorite. At low Ca/Si ratio, the Si chains are defect free and the Si Q 3 and Q 2 environments account, respectively, for up to 40.2 ± 1.5% and 55.6 ± 3.0% of the total Si, with part of the Q 3 Si being attributable to remnants of the synthesis reactant. As the Ca/Si ratio increases up to 0.87 ± 0.02, the Si Q 3 environment decreases down to 0 and is preferentially replaced by the Q 2 environment, which reaches 87.9 ± 2.0%. At higher ratios, Q 2 decreases down to 32.0 ± 7.6% for Ca/Si = 1.38 ± 0.03 and is replaced by the Q 1 environment, which peaks at 68.1 ± 3.8%. The combination of X-ray diffraction and NMR allowed capturing the depolymerization of Si chains as well as a two-step variation in the layer-to-layer distance. This latter first increases from ∼11.3 Å (for samples having a Ca/Si ratio <∼0.6) up to 12.25 Å at Ca/Si = 0.87 ± 0.02, probably as a result of a weaker layer-to-layer connectivity, and then decreases down to 11 Å when the Ca/Si ratio reaches 1.38 ± 0.03. The decrease in layer-to-layer distance results from the incorporation of interlayer Ca that may form a Ca(OH)2-like structure, nanocrystalline and intermixed with C–S–H layers, at high Ca/Si ratios.
机译:使用电子探针显微分析仪,粉末X射线衍射, 29 ,研究了Ca / Si比在0.57±0.05和1.47±0.04之间的纳米晶体硅酸钙水合物(C–S–H)的结构。 sup> Si幻角旋转NMR,以及傅立叶变换红外和同步加速器X射线吸收光谱。所有样品均可描述为纳米晶和有缺陷的雪铁矿。在低的Ca / Si比下,Si链无缺陷,且Si Q 3 和Q 2 环境分别占40.2±1.5%和55.6± Si总量的3.0%,Q 3 Si的一部分可归因于合成反应物的残留。当Ca / Si比增加到0.87±0.02时,Si Q 3 环境降低到0,并优先由Q 2 环境替代,达到87.9± 2.0%。在较高的比率下,对于Ca / Si = 1.38±0.03,Q 2 降低至32.0±7.6%,并由Q 1 环境取代,该环境在68.1±3.8达到峰值%。 X射线衍射和NMR的结合可以捕获Si链的解聚以及层间距离的两步变化。后者首先从〜11.3Å(对于Ca / Si比<〜0.6的样品)增加到Ca / Si = 0.87±0.02时的12.25Å,这可能是由于层间连接性较弱的结果,然后当Ca / Si比达到1.38±0.03时,厚度降低至11Å。层到层距离的减小是由于掺入了可能形成Ca(OH)2样结构的中间层Ca,它是纳米晶的,并以高Ca / Si比与CS–H层混合。

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