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Cement and Concrete Research, ISSN 0008-8846, 10/2016, Volume 88, pp. 126 - 135
Journal Article
Journal of the American Ceramic Society, ISSN 0002-7820, 04/2006, Volume 89, Issue 4, pp. 1161 - 1179
Journal Article
Journal of the American Chemical Society, ISSN 0002-7863, 05/2016, Volume 138, Issue 19, pp. 6131 - 6134
Journal Article
Progress in Polymer Science, ISSN 0079-6700, 01/2014, Volume 39, Issue 1, pp. 43 - 86
Journal Article
Construction and Building Materials, ISSN 0950-0618, 10/2017, Volume 152, pp. 232 - 239
•Early-age interaction between the GO and cement hydrates was revealed.•Ca2+ cations can be captured by the GO at the very beginning of mixing.•GO accelerates... 
Early-age interaction | Graphene oxide (GO) | Microstructures | Hydration | Drying shrinkage | Cement paste | DISPERSION | BEHAVIOR | MATERIALS SCIENCE, MULTIDISCIPLINARY | COMPOSITES | CORROSION | STRENGTH | TRANSPORT | ENGINEERING, CIVIL | CONSTRUCTION & BUILDING TECHNOLOGY | PASTE | ENHANCEMENT | SILICA FUME | Usage | Analysis | Oxide minerals | Spectrum analysis | Cement | Research | Chemical properties | Hydration (Chemistry) | Hydrates
Journal Article
Construction & building materials, ISSN 0950-0618, 09/2018, Volume 183, pp. 234 - 242
•Study the expansive mechanism of newly developed MgO expansive agents.•Generalize the morphology and position of brucite crystals in cement pastes thoroughly... 
MgO expansive agent | Crystal growth | Supersaturation | Expansion | Brucite | BLAST-FURNACE SLAG | RAW-MATERIAL | MAGNESIA | MATERIALS SCIENCE, MULTIDISCIPLINARY | REACTIVE MGO | CONCRETE | CEMENTITIOUS MATERIALS | ENGINEERING, CIVIL | CARBONATION | CONSTRUCTION & BUILDING TECHNOLOGY | SHRINKAGE | PRODUCTS | FLY-ASH | Growth | Analysis | Magnesium oxide | Cement | Crystals | Mechanical properties | Porosity | Hydration (Chemistry)
Journal Article
Science and Engineering of Composite Materials, ISSN 0792-1233, 11/2016, Volume 23, Issue 6, pp. 605 - 615
.... The fitted results indicate that the entire process of cement hydration can be modeled by connecting a nucleation and growth mechanism with a diffusion mechanism... 
particle size | cement | kinetics | hydration | modeling/model | C3S | CURING TEMPERATURE | MATERIALS SCIENCE, COMPOSITES | TRICALCIUM SILICATE | PRESSURE | EVOLUTION | OIL-WELL CEMENT | ALITE | SYSTEMS | WATER | Mechanical properties | Models | Hydration (Chemistry) | Dynamics | Cement | Nucleation
Journal Article
Clinical Cancer Research, ISSN 1078-0432, 09/2017, Volume 23, Issue 18, pp. 5527 - 5536
Journal Article
Journal of Non-Crystalline Solids, ISSN 0022-3093, 12/2018, Volume 502, pp. 164 - 171
...) decreased from 916 to 867 °C, and 5.66–1.13, respectively. The crystallization mechanism transformed from bulk crystallization to surface crystallization... 
Crystallization mechanism | Modification | Molten blast furnace slag | Glass ceramics | Volume shrinkage | KINETICS | BEHAVIOR | MATERIALS SCIENCE, MULTIDISCIPLINARY | MATERIALS SCIENCE, CERAMICS | MICROSTRUCTURE | Explosions | Silicates | Ceramics | Furnaces | Activation energy | Ceramic materials
Journal Article
Construction and Building Materials, ISSN 0950-0618, 05/2018, Volume 171, pp. 377 - 387
•Autogenous shrinkage of AAFS pastes with various slag replacement ratios of fly ash measured.•Autogenous shrinkage and chemical shrinkage of AAFS pastes... 
Shrinkage | Alkali-activated cement | Microstructure | Isothermal reaction kinetics | Pore size distribution | CEMENT PASTE | BLAST-FURNACE SLAG | BEHAVIOR | MATERIALS SCIENCE, MULTIDISCIPLINARY | STRENGTH PROPERTIES | GEOPOLYMER CONCRETE | ASH/SLAG PASTE | S-H | ENGINEERING, CIVIL | DRYING SHRINKAGE | CONSTRUCTION & BUILDING TECHNOLOGY | PORTLAND-CEMENT | EARLY AGES
Journal Article