Area of research
Materials Chemistry · Catalysis
Research interest
Research interests include Chemistry, Materials science, Olivine, Brucite, Hydrothermal circulation, and Chemical engineering.
Minimizing surface adhesion of Sylgard 184 for medical applications
Transparent and luminescent glasses of gold thiolate coordination polymers
High-temperature-reactivity of Al–Ti alloys in contact with SiC
Room Temperature Magnetic Switchability Assisted by Hysteretic Valence Tautomerism in a Layered Two-Dimensional Manganese-Radical Coordination Framework
Experimental investigation of As, Sb and Cs behavior during olivine serpentinization in hydrothermal alkaline systems
A luminescent double helical gold(<scp>i</scp>)–thiophenolate coordination polymer obtained by hydrothermal synthesis or by thermal solid-state amorphous-to-crystalline isomerization
Thermal conductivity of polyimide/boron nitride nanocomposite films
The abundance and stability of “water” in type 1 and 2 carbonaceous chondrites (CI, CM and CR)
Simultaneous precipitation of magnesite and lizardite from hydrothermal alteration of olivine under high-carbonate alkalinity
Heat capacity measurements of various biomass types and pyrolysis residues
Sodium Hydrazinidoborane: A Chemical Hydrogen‐Storage Material
Mineral replacement rate of olivine by chrysotile and brucite under high alkaline conditions
Gas–solid carbonation of Ca(OH)2 and CaO particles under non-isothermal and isothermal conditions by using a thermogravimetric analyzer: Implications for CO2 capture
Room-temperature hydrogen release from activated carbon-confined ammonia borane
Rapid Precipitation of Magnesite Microcrystals from Mg(OH)<sub>2</sub>-H<sub>2</sub>O-CO<sub>2</sub> Slurry Enhanced by NaOH and a Heat-Aging Step (from ∼20 to 90 °C)
Revision of the NaBO2–H2O phase diagram for optimized yield in the H2 generation through NaBH4 hydrolysis
Sequential precipitation of a new goethite–calcite nanocomposite and its possible application in the removal of toxic ions from polluted water