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Evolution of organo-clay composites with respect to thermal maturity in type II organic-rich source rocks. Geochimica et Cosmochimica Acta. 195:68-83.. 2016.
Experimental chemo-mechanics of early-age fracture properties of cement paste. Cement and Concrete Research. 75:42-52.. 2015.
Experimental determination of the fracture toughness via microscratch tests: Application to polymers, ceramics, and metals. Journal of Materials Research. 27(2):485-493.. 2012.
Flügge’s Conjecture: Dissipation- versus Deflection-Induced Pavement–Vehicle Interactions. Journal of Engineering Mechanics. 140(8):ArticleNumber:04014053.. 2014.
Fracture scaling relations for scratch tests of axisymmetric shape. Journal of the Mechanics and Physics of Solids. 60(3):379-390.. 2012.
Fracture toughness anomalies: Viewpoint of topological constraint theory. Acta Materialia. 121:234-239.. 2016.
Fracture toughness of calcium–silicate–hydrate from molecular dynamics simulations. Journal of Non-Crystalline Solids. 419:58-64.. 2015.
Free Volume Theory of Hydrocarbon Mixture Transport in Nanoporous Materials. The Journal of Physical Chemistry Letters. 7(19):3712-3717.. 2016.
From cellulose to kerogen: molecular simulation of a geological process. Chemical Science. 8(12):8325-8335.. 2017.
Griffith’s postulate: Grand Canonical Monte Carlo approach for fracture mechanics of solids. Engineering Fracture Mechanics. 199:544-554.. 2018.
Hydration of calcium oxide surface predicted by reactive force field molecular dynamics. Langmuir. 28(9):4187–4197.. 2012.
Impact of Chemical Impurities on the Crystalline Cement Clinker Phases Determined by Atomistic Simulations. Crystal Growth & Design. 11(7):2964-2972.. 2011.
Impact of Nanoporosity on Hydrocarbon Transport in Shales’ Organic Matter. Nano Letters. 18(2):832-837.. 2018.
An improved technique for characterizing the fracture toughness via scratch test experiments. Wear. 313(1-2):117-124.. 2014.
Improving the practicality and safety of artificial corneas: Pre-assembly and gamma-rays sterilization of the Boston Keratoprosthesis. The Ocular Surface. 16(3):322-330.. 2018.
Inference of the phase-to-mechanical property link via coupled X-ray spectrometry and indentation analysis: Application to cement-based materials. Cement and Concrete Research. 67:271-285.. 2015.
Inhomogeneity in Cement Hydrates: Linking Local Packing to Local Pressure. Journal of Nanomechanics and Micromechanics. 7(2):ArticleNumber:UNSP04017003.. 2017.
Irwin׳s conjecture: Crack shape adaptability in transversely isotropic solids. Journal of the Mechanics and Physics of Solids. 68:1-13.. 2014.
Kinetic Simulations of Cement Creep: Mechanisms from Shear Deformations of Glasses. 10th International Conference on Mechanics and Physics of Creep, Shrinkage, and Durability of Concrete and Concrete StructuresCONCREEP 10. CONCREEP 10: MECHANICS AND PHYSICS OF CREEP, SHRINKAGE, AND DURABILITY OF CONCRETE AND CONCRETE STRUCTURES:555-564.. 2015.
Le Châtelier’s conjecture: Measurement of colloidal eigenstresses in chemically reactive materials. Journal of the Mechanics and Physics of Solids. 112:334-344.. 2018.
Mechanistic Approach to Pavement-Vehicle Interaction and Its Impact on Life-Cycle Assessment. Transportation Research Record: Journal of the Transportation Research Board. (2306):171-179.. 2012.
Mesoscale Poroelasticity of Heterogeneous Media. Journal of Nanomechanics and Micromechanics. 7(4):ArticleNumber:UNSP04017016.. 2017.
Mesoscale structure, mechanics, and transport properties of source rocks’ organic pore networks. Proceedings of the National Academy of Sciences. 115(49):12365-12370.. 2018.
The Meso-Scale Texture of Cement Hydrate Gels: Out-of-Equilibrium Evolution and Thermodynamic Driving. 10th International Conference on Mechanics and Physics of Creep, Shrinkage, and Durability of Concrete and Concrete Structures CONCREEP 10. CONCREEP 10: MECHANICS AND PHYSICS OF CREEP, SHRINKAGE, AND DURABILITY OF CONCRETE AND CONCRETE STRUCTURES:34-38.. 2015.
Mesoscale texture of cement hydrates. Proceedings of the National Academy of Sciences. 113(8):2029-2034.. 2016.