The Atomic-Level Structure of Cementitious Calcium Aluminate Silicate Hydrate.
作者:A. Kunhi Mohamed, Pinelopi Moutzouri, Pierrick Berruyer, Brennan J. Walder, J. Siramanont, Maya Harris, M. Negroni, Sandra Galmarini, S. C. Parker, K. Scrivener, L. Emsley, P. Bowen · 发表于:Journal of the American Chemical Society · 年份:2020 · DOI:10.1021/jacs.0c02988 · 被引用次数:188 · 研究领域:Chemistry、Medicine
Despite use of blended cements containing significant amounts of aluminum for over thirty years, the structural nature of aluminum in the main hydration product, calcium aluminate silicate hydrate (C-A-S-H), remains elusive. Using first principles calculations, we predict that aluminum is incorporated into the bridging sites of the linear silicate chains and that at high Ca:Si and H2O ratios, the stable coordination number of aluminum is six. Specifically, we predict that silicate-bridging [AlO2(OH)4]5- complexes are favored, stabilized by hydroxyl ligands and charge balancing calcium ions in the interlayer space. This structure is then confirmed experimentally by one- and two-dimensional dynamic nuclear polarization enhanced 27Al and 29Si solid-state NMR experiments. We notably assign a narrow 27Al NMR signal at 5 ppm to the silicate-bridging [AlO2(OH)4]5- sites, and show that this signal correlates to 29Si NMR signals from silicates in C-A-S-H, conflicting with its conventional assignment to a "third aluminate hydrate" (TAH) phase. We therefore conclude that TAH does not exist. This resolves a long-standing dilemma about the location and nature of the six-fold coordinated aluminum observed by 27Al NMR in C-A-S-H samples.