硅酸盐
硅酸钙
多态性(计算机科学)
结晶学
雪硅钙石
材料科学
拉曼光谱
硅
矿物学
化学
分析化学(期刊)
物理
有机化学
冶金
水泥
基因
复合材料
光学
基因型
生物化学
作者
Yuan Chiang,Shu-Wei Chang
标识
DOI:10.1016/j.cemconres.2020.106268
摘要
Variable stoichiometry and silicate polymorphism in calcium-silicate-hydrates (C-S-H) has impeded the revelation of point defects distribution in the silicate tetrahedral network of C-S-H, which resembles tobermorite crystal structure with some bridging tetrahedra (BT) and paired tetrahedra (PT) vacancies in dreierketten chains. Here we use a computational approach to characterize silicate polymorphism by introducing the vacancy ratio of BT to PT (α) and establishing a three-term empirical mean chain length (MCL) formula for different calcium-to‑silicon ratios (Ca/Si) ranging from 1.2 to 2.3. The formula identifies BT and PT controls at low and high α respectively and allows an inverse mapping of polymorphic range based on NMR experiments. The proposed computational framework quantitatively describes silicate polymorphs and links NMR-measured MCL to C-S-H atomistic configurations at the molecular level.
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