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- 1D α-FeO (OH) and its transformation to α-Fe2O3 nanorods: Synthesis and . . .
The transformation of 1D α-FeO (OH) to α-Fe 2 O 3 nanorods further expands its utility, as α-Fe2 O 3, or hematite, is a well-known semiconducting material with exceptional photocatalytic properties
- A deeper and hotter Martian core-mantle differentiation inferred from . . .
In this study, we aim to constrain the Martian core-mantle differentiation by examining FeO partitioning between core and mantle materials, incorporating improved Martian compositional data from the InSight mission Using ab initio thermodynamic techniques, we calculated the FeO partition coefficient between liquid iron and silicate melt
- FeO might be more suitable than Fe - ScienceDirect
FeO might be more suitable than Fe2+ for the construction of anammox-dominated Fe-N coupling system: Based on 15 N isotope tracing
- Equation of state and phase diagram of FeO - ScienceDirect
Wüstite, Fe 1 − x O, is an important component in the mineralogy of Earth's lower mantle and may also be a component in the core Therefore the high pressure, high temperature behavior of FeO, including its phase diagram and equation of state, is essential knowledge for understanding the properties and evolution of Earth's deep interior We performed X-ray diffraction measurements using a
- Comparison of transient shrinkage behaviours between binary ternary . . .
Our previous work initially investigated the shrinkage behaviors of binary- FeO rich oxides mixtures (FeO–CaO, FeO–SiO 2, FeO–MgO, FeO–Al 2 O 3) under simulated cohesive zone conditions in a CO [46, 47] This study further explores the differences in shrinkage behaviors between CO and H 2 by introducing binary ternary- FeO-rich oxides
- Preparation, characterization of green synthesis FeO nanoparticles and . . .
In the current study, a green and facile route for the synthesis of iron oxide nanoparticles (FeO-NPs) was adopted The FeO-NPs were fabricated via a …
- Properties evaluation of electric smelting furnace slag: Viscosity and . . .
This study investigated the viscosity and sulfide capacity of electric smelting furnace (ESF) slag (CaO-SiO2 -6wt %MgO-10 wt%Al 2 O 3-FeO) with a basicity of 0 8 through cylinder rotating method and gas-slag equilibrium experiments Additionally, the high-temperature structure of the slag was analyzed using FTIR and Raman spectroscopy The results showed that as the FeO content increased from
- Facile synthesis and electrochemical properties of FeO Fe (OH)
By using the surfactant-assisted method for synthesizing FeO Fe (OH) 3 nanosheets, we identified the synthesis conditions that simultaneously provide excellent electrochemical properties and surface stability to the nanosheets [35], [36], [37]
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