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Zenon 7.0 lbl state
Zenon 7.0 lbl state









zenon 7.0 lbl state zenon 7.0 lbl state

Monteiro, “Fibrillar calcium silicate hydrate seeds from hydrated tricalcium silicate lower cement demand,” Cement Contrete Res.

zenon 7.0 lbl state

Monteiro, “The structure and intrinsic mechanical properties of nanocrystalline calcium silicate hydrate,” ACS Sustainable Chem Eng 8 (33), 12453-12461 (2020). Monteiro, “Mechanical properties of struvite-K: A high-pressure X-ray diffraction study,” Cement Contrete Res. Monteiro, “Influences of cross-linking and Al incorporation on the intrinsic mechanical properties of tobermorite,” Cement Contrete Res. Stavrou, “High pressure chemical reactivity and structural study of the Na-P and Li-P systems,” J. Klötzer, “Carbide-Modified Pd on ZrO 2 as Active Phase for CO 2 -Reforming of Methane-A Model Phase Boundary Approach,” Catalysts 10 (9), 1000 (2020). Shim, “Mineralogy and density of Archean volcanic crust in the mantle transition zone,” Physics of the Earth and Planetary Interiors 305, 106490 (2020). Gu, “Ductile Metallic Glass Nanoparticles via Colloidal Synthesis,” Nano Lett. Chen, “Synthesis of Atomically Thin Hexagonal Diamond with Compression,” Nano Lett. Gurlo, “Sintering of ceramics for clay in situ resource utilization on Mars,” Open Ceram. Gurlo, “Clay in situ resource utilization with Mars global simulant slurries for additive manufacturing and traditional shaping of unfired green bodies,” Acta Astronaut. Sen, “Unravelling the mechanism of pressure induced polyamorphic transition in an inorganic molecular glass,” Scientific Reports 10 (1), 5208 (2020). Urban, “A Mechanistic Analysis of Phase Evolution and Hydrogen Storage Behavior in Nanocrystalline Mg(BH 4 ) 2 within Reduced Graphene Oxide,” ACS Nano 14 (2), 1745-1756 (2020). Karunadasa, “High Compression-Induced Conductivity in a Layered Cu-Br Perovskite,” Angew. Urban, nanocomposites display suppressed phase-change temperatures,” J. Parsons, “High-pressure polymorphism in pyridine,” IUCrJ 7 (1), 58-70 (2020). Parsons, “Pressure-Induced Inclusion of Neon in the Crystal Structure of a Molecular Cu2(pacman) Complex at 4.67 GPa,” Chem. Carraro, “Silicate Bond Characteristics in Calcium-silicate-hydrates Determined by High Pressure Raman Spectroscopy,” Journal of Physical Chemistry C 124 (33), 18335-18345 (2020). Zeng, “Lattice distortion and stability of (Co 0.2 Cu 0.2 Mg 0.2 Ni 0.2 Zn 0.2 )O high-entropy oxide under high pressure,” Mater. Shim, “Phase transformation of hydrous ringwoodite to the lower-mantle phases and the formation of dense hydrous silica,” Am. Shim, “Possible H 2 O storage in the crystal structure of CaSiO 3 perovskite,” Physics of the Earth and Planetary Interiors 299, 106412 (2020). Penner, “In Situ-Determined Catalytically Active State of LaNiO 3 in Methane Dry Reforming,” ACS Catalysis 10 (2), 1102-1112 (2020). Radousky, “Cold Spray Deposition of Thermoelectric Materials,” JOM 72 (8), 2853-2859 (2020). Yao, “High-enthalpy crystalline phases of cadmium telluride,” Phys. Zeng, “Polyamorphism in a solute-lean Al-Ce metallic glass,” J. Kalkan, “A tungsten external heater for BX90 diamond anvil cells with a range up to 1700 K,” Rev. Penner, “Mechanistic in situ insights into the formation, structural and catalytic aspects of the La 2 NiO 4 intermediate phase in the dry reforming of methane over Ni-based perovskite catalysts,” Appl. Dolado, “Normal and anomalous self-healing mechanism of crystalline calcium silicate hydrates,” Cement Contrete Res. Prakapenka, “Equation of state of TiN at high pressures and temperatures: A possible host for nitrogen in planetary mantles,” J Geophys Res Solid Earth 126 (2), e2020JB020074 (2021). Wenk, “Exploring microstructures in lower mantle mineral assemblages with synchrotron x-rays,” Science Advances 7 (1), eabd3614 (2021). Penner, “Steering the Methane Dry Reforming Reactivity of Ni/La 2 O 3 Catalysts by Controlled In Situ Decomposition of Doped La 2 NiO 4 Precursor Structures,” ACS Catalysis 11 (1), 43-59 (2021). Kalkan, “Structural stability of mechanically alloyed amorphous (FeCoNi) 70 Ti 10 B 20 under high-temperature and high-pressure,” J.











Zenon 7.0 lbl state