Multiscale structure of calcium- and magnesium-silicate-hydrate gels

作者:Chiang W S; Ferraro G; Fratini E; Ridi F; Yeh Y Q; Jeng U S; Chen S H*; Baglioni P
来源:Journal of Materials Chemistry A, 2014, 2(32): 12991-12998.
DOI:10.1039/c4ta02479f

摘要

Concrete is the world's most widely used building material. However, the production of CaO-based cements generates large amounts of anthropogenic emissions of CO2. Among different strategies to reduce CO2 emissions, newly developed MgO-based cements, though currently suffering from inferior mechanical properties, are some of the most promising and attractive options. By combining wide- and small-angle X-ray scattering and electron microscopy, we identified differences in the multiscale structure of the two main binding phases: the calcium-silicate-hydrate (C-S-H) get for CaO-based cements and the magnesium-silicate-hydrate (M-S-H) gel for MgO-based cements. We found the primary unit at the nanoscale level of C-S-H to be a muitilayer disk-like globule, whereas for M-S-H it is a spherical globule. These prominent differences result in diverse microstructures, leading to disparities in mechanical properties and durability for the associated cements. Modulating the M-S-H structure and enhancing the compatibility between C-S-H and M-S-H will be the key to improve the robustness of eco-friendly MgO-based binders.

  • 出版日期2014-8-28