This thesis investigates the effects of aluminates, sulfates, and heterogeneous substrates on the nucleation and growth of synthetic calcium-silicate-hydrates (C-S-H) produced by dropwise precipitation. The use of synthetic C-S-H, separate from other cementitious phases, allows formation mechanisms and kinetics effects to be investigated in a simplified system. The addition of other ions and substrates then allows an approach to the more complicated, multi-phase system of cement and concrete. The first goal of this thesis was to reproducibly synthesize single-phase C-S-H with Ca:Si from 1 to 2. Guidelines were described for collection, drying, and handling of the precipitates to prevent the formation of Ca(OH)2 during synthesis and minimize...
Calcium Silicate Hydrate (C-S-H) is the primary binding agent that is responsible for setting and ha...
Concrete is the most consumed manufactured commodity by mass in the world. The manufacturing of Port...
Most concrete is produced using calcium (alkali) aluminosilicate hydrate (C-(N-)A-S-H)-based cement....
This thesis investigates the effect of different parameters such as Fe (III), D-gluconate and hetero...
Various methods have been developed to synthesize C-S-H; however, these methods have only allowed fo...
preprint (33 pages, 7 figures) and supp. info (32 pages, 51 figures, 4 tables)Calcium silicate hydra...
This thesis was previously held under moratorium from 4th June 2018 until 4th June 2023.This doctora...
A model is developed to explain why the C-S-H phase that grows during the hydration of Portland Ceme...
Calcium Silicate Hydrate (C-S-H) constitutes two-thirds of hydrated cement paste by volume. Having a...
The filler effect is the most important physical mechanism of mineral admixtures in the early hydrat...
Calcium-silicate hydrate (commonly referred to as C–S–H in cement chemistry) is the main phase and t...
Triggered by the recent advance in materials synthesis and characterization techniques, there has be...
Portland cement is a mixture of solid phases which all react with water. Tricalcium silicate (Ca3SiO...
<p>A complete understanding of the mechanisms upon which a filler acts in a cement-based material, e...
Thesis: S.M., Massachusetts Institute of Technology, Department of Materials Science and Engineering...
Calcium Silicate Hydrate (C-S-H) is the primary binding agent that is responsible for setting and ha...
Concrete is the most consumed manufactured commodity by mass in the world. The manufacturing of Port...
Most concrete is produced using calcium (alkali) aluminosilicate hydrate (C-(N-)A-S-H)-based cement....
This thesis investigates the effect of different parameters such as Fe (III), D-gluconate and hetero...
Various methods have been developed to synthesize C-S-H; however, these methods have only allowed fo...
preprint (33 pages, 7 figures) and supp. info (32 pages, 51 figures, 4 tables)Calcium silicate hydra...
This thesis was previously held under moratorium from 4th June 2018 until 4th June 2023.This doctora...
A model is developed to explain why the C-S-H phase that grows during the hydration of Portland Ceme...
Calcium Silicate Hydrate (C-S-H) constitutes two-thirds of hydrated cement paste by volume. Having a...
The filler effect is the most important physical mechanism of mineral admixtures in the early hydrat...
Calcium-silicate hydrate (commonly referred to as C–S–H in cement chemistry) is the main phase and t...
Triggered by the recent advance in materials synthesis and characterization techniques, there has be...
Portland cement is a mixture of solid phases which all react with water. Tricalcium silicate (Ca3SiO...
<p>A complete understanding of the mechanisms upon which a filler acts in a cement-based material, e...
Thesis: S.M., Massachusetts Institute of Technology, Department of Materials Science and Engineering...
Calcium Silicate Hydrate (C-S-H) is the primary binding agent that is responsible for setting and ha...
Concrete is the most consumed manufactured commodity by mass in the world. The manufacturing of Port...
Most concrete is produced using calcium (alkali) aluminosilicate hydrate (C-(N-)A-S-H)-based cement....