Resumen
A critical challenge in reducing anthropogenic impacts on the environment is to decrease the carbon footprint of the cement industry. A key concern in the search for more sustainable cement designs is the understanding and control of the depolymerization process that eventually determines the integrity of their silicate chains under mechanical, chemical, or thermal stresses. Herein, we use metadynamics to show that the depolymerization of cement silicate skeletons consists of hydroxylation followed by bond-breaking. We then clarify the local effects of doping the silicate chains: a stable pentacoordinate state following hydroxylation is promoted by aluminum atoms but restrained by phosphorus additions, the presence of two dopants being related to energy landscapes less favorable to bond-breaking. The role of these dopants is explained in cement-based materials and is key to the quest for low-cost opportunities to preserve the strength of cement for high temperatures or even over time.
| Idioma original | Inglés |
|---|---|
| Páginas (desde-hasta) | 15015-15021 |
| Número de páginas | 7 |
| Publicación | ACS Sustainable Chemistry and Engineering |
| Volumen | 6 |
| N.º | 11 |
| DOI | |
| Estado | Publicada - 5 nov 2018 |
| Publicado de forma externa | Sí |
ODS de las Naciones Unidas
Este resultado contribuye a los siguientes Objetivos de Desarrollo Sostenible
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ODS 9: Industria, innovación e infraestructura
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ODS 13: Acción por el clima
Huella
Profundice en los temas de investigación de 'Doping as a Way to Protect Silicate Chains in Calcium Silicate Hydrates'. En conjunto forman una huella única.Citar esto
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