首页> 美国卫生研究院文献>Acta Crystallographica Section B Structural Science Crystal Engineering and Materials >X-ray diffraction: a powerful tool to probe and understand the structure of nanocrystalline calcium silicate hydrates
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X-ray diffraction: a powerful tool to probe and understand the structure of nanocrystalline calcium silicate hydrates

机译:X射线衍射:探测和了解纳米晶硅酸钙水合物结构的强大工具

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摘要

X-ray diffraction (XRD) patterns were calculated and compared to literature data with the aim of investigating the crystal structure of nanocrystalline calcium silicate hydrates (C-S-H), the main binding phase in hydrated Portland cement pastes. Published XRD patterns from C-S-H of Ca/Si ratios ranging from ∼ 0.6 to ∼ 1.7 are fully compatible with nanocrystalline and turbostratic tobermorite. Even at a ratio close or slightly higher than that of jennite (Ca/Si = 1.5) this latter mineral, which is required in some models to describe the structure of C-S-H, is not detected in the experimental XRD patterns. The 001 basal reflection from C-S-H, positioned at ∼ 13.5 Å when the C-S-H structural Ca/Si ratio is low (< 0.9), shifts towards smaller d values and sharpens with increasing Ca/Si ratio, to reach ∼ 11.2 Å when the Ca/Si ratio is higher than 1.5. Calculations indicate that the sharpening of the 001 reflection may be related to a crystallite size along >c* (i.e. a mean number of stacked layers) increasing with the C-S-H Ca/Si ratio. Such an increase would contribute to the observed shift of the 001 reflection, but fails to quantitatively explain it. It is proposed that the observed shift could result from interstratification of at least two tobermorite-like layers, one having a high and the other a low Ca/Si ratio with a basal spacing of 11.3 and 14 Å, respectively.
机译:计算X射线衍射(XRD)图案,并将其与文献数据进行比较,目的是研究水合硅酸盐水泥浆中的主要粘结相纳米晶硅酸钙水合物(C-S-H)的晶体结构。从Ca / Si比率的C-S-H公布的XRD图谱,范围从〜0.6到〜1.7,与纳米晶和涡轮层辉石完全兼容。即使X矿物的比率接近或略高于(Ca / Si = 1.5),在某些模型中描述C-S-H结构所需的后一种矿物在实验XRD模式中也未检测到。当CSH结构的Ca / Si比低(<0.9)时,来自CSH的001基反射位于〜13.5Å处,朝较小的d值移动并随着Ca / Si比的增加而锐化,当Ca / Si比达到11.2Å时。 Si比高于1.5。计算表明,随着C-S-H Ca / Si比的增加,沿> c *的微晶尺寸可能与001反射的锐化有关。这样的增加将有助于观察到的001反射的偏移,但是无法定量地解释它。建议观察到的偏移可能是由于至少两层钙铁矿层的互层引起的,其中一层具有较高的Ca / Si比,另一层具有较低的Ca / Si比,其基本间距分别为11.3和14Å。

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