- The importance of early strength in structural applications: Obsidian‐based geopolymer mortars and silica fume substitution study. Dans: Structural Concrete. :
- Effect of Wrapping Thickness and Type on Reinforced Bridge Piers: A Numerical Study. Dans: Periodica Polytechnica Civil Engineering, v. 68, n. 4 (juillet 2024). (2024):
- Mechanical and Microstructural Properties of Mortars: Obsidian Powder Effect. Dans: Journal of Sustainable Construction Materials and Technologies, v. 9, n. 2 (juin 2024). (2024):
- Geopolymer mortars having glassy materials considering mechanical and microstructural features. Dans: Journal of Building Engineering, v. 91 (août 2024). (2024):
- Effect of aluminosilicate precursors and curing regime on physico-mechanical durability and microstructural characteristics of coral geopolymers (Cor-Geo): Cleaner production for coral islands. Dans: Construction and Building Materials, v. 407 (décembre 2023). (2023):
- A novel framework for strength prediction of geopolymer mortar: Renovative precursor effect. Dans: Journal of Building Engineering, v. 76 (octobre 2023). (2023):
- Novel binder material in geopolymer mortar production: Obsidian stone powder. Dans: Structural Concrete, v. 24, n. 4 (5 juillet 2023). (2023):
- (2021): Pozzolanic Effect on the Hydration Heat of Cements Incorporating Fly Ash, Obsidian, and Slag Additives. Dans: Advances in Civil Engineering, v. 2021 (janvier 2021).
- Determination of the Pozzolanic Activities of Trachyte and Rhyolite and Comparison of the Test Methods Implemented. Dans: International Journal of Civil Engineering, v. 18, n. 9 (juin 2020). (2020):
- Transition coefficients between compressive strengths of samples with different shape and size in mass concrete and use of weight maturity method in dam construction. Dans: Structural Concrete, v. 22 (janvier 2021). (2021):
- Comparing the pozzolanic activity properties of obsidian to those of fly ash and blast furnace slag. Dans: Construction and Building Materials, v. 164 (mars 2018). (2018):
- The effect of capillarity on chloride transport and the prediction of the accumulation region of chloride in concretes with reinforcement corrosion. Dans: Construction and Building Materials, v. 28 (mars 2012). (2012):