Home

Vant til Bliv sammenfiltret Mappe fetio3 band gap skrivning læsning Tremble

Minerals | Free Full-Text | Theoretical Modeling of Defects, Dopants, and  Diffusion in the Mineral Ilmenite
Minerals | Free Full-Text | Theoretical Modeling of Defects, Dopants, and Diffusion in the Mineral Ilmenite

Energy band gap and BET surface area of FeTiO 3 , CoTiO 3 and NiTiO 3... |  Download Table
Energy band gap and BET surface area of FeTiO 3 , CoTiO 3 and NiTiO 3... | Download Table

Electronic structure and magnetism of new ilmenite compounds for spintronic  devices: FeBO3 (B = Ti, Hf, Zr, Si, Ge, Sn) - ScienceDirect
Electronic structure and magnetism of new ilmenite compounds for spintronic devices: FeBO3 (B = Ti, Hf, Zr, Si, Ge, Sn) - ScienceDirect

Structure and Electronic Effects from Mn and Nb Co-doping for Low Band Gap  BaTiO3 Ferroelectrics | The Journal of Physical Chemistry C
Structure and Electronic Effects from Mn and Nb Co-doping for Low Band Gap BaTiO3 Ferroelectrics | The Journal of Physical Chemistry C

Review of one-dimensional and two-dimensional nanostructured materials for  hydrogen generation - Physical Chemistry Chemical Physics (RSC Publishing)  DOI:10.1039/C4CP04245J
Review of one-dimensional and two-dimensional nanostructured materials for hydrogen generation - Physical Chemistry Chemical Physics (RSC Publishing) DOI:10.1039/C4CP04245J

Energy band gap and BET surface area of FeTiO 3 , CoTiO 3 and NiTiO 3... |  Download Table
Energy band gap and BET surface area of FeTiO 3 , CoTiO 3 and NiTiO 3... | Download Table

Designing a Lower Band Gap Bulk Ferroelectric Material with a Sizable  Polarization at Room Temperature | ACS Energy Letters
Designing a Lower Band Gap Bulk Ferroelectric Material with a Sizable Polarization at Room Temperature | ACS Energy Letters

Heterostructured γ-Fe2O3/FeTiO3 magnetic nanocomposite: An efficient  visible-light-driven photocatalyst for the degradation of organic dye -  ScienceDirect
Heterostructured γ-Fe2O3/FeTiO3 magnetic nanocomposite: An efficient visible-light-driven photocatalyst for the degradation of organic dye - ScienceDirect

Synthetic Ilmenite (FeTiO3) Nanoparticles as a Heterogeneous Electro-Fenton  Catalyst for the Degradation of Tetracycline in Wastewater | Industrial &  Engineering Chemistry Research
Synthetic Ilmenite (FeTiO3) Nanoparticles as a Heterogeneous Electro-Fenton Catalyst for the Degradation of Tetracycline in Wastewater | Industrial & Engineering Chemistry Research

Iron based photoanodes for solar fuel production PERSPECTIVE
Iron based photoanodes for solar fuel production PERSPECTIVE

Optical properties of FeTiO 3 nanoparticles: (a) absorption and... |  Download Scientific Diagram
Optical properties of FeTiO 3 nanoparticles: (a) absorption and... | Download Scientific Diagram

The calculated band gap for FeTiO3/TiO2 and FeTiO3/TiO2/Ag nanocomposites |  Download Scientific Diagram
The calculated band gap for FeTiO3/TiO2 and FeTiO3/TiO2/Ag nanocomposites | Download Scientific Diagram

PDF] Orbital structure of FeTiO3 ilmenite investigated with  polarization-dependent X-ray absorption spectroscopy and band structure  calculations | Semantic Scholar
PDF] Orbital structure of FeTiO3 ilmenite investigated with polarization-dependent X-ray absorption spectroscopy and band structure calculations | Semantic Scholar

Photocatalytic reduction of CO2 on FeTiO3/TiO2 photocatalyst - ScienceDirect
Photocatalytic reduction of CO2 on FeTiO3/TiO2 photocatalyst - ScienceDirect

Tauc plot for band-gap estimation of samples: a FeTiO3-0; b FeTiO3-2 h;...  | Download Scientific Diagram
Tauc plot for band-gap estimation of samples: a FeTiO3-0; b FeTiO3-2 h;... | Download Scientific Diagram

Recent advances in constructing heterojunctions of binary semiconductor  photocatalysts for visible light responsive CO2 reduction to energy  efficient fuels: A review - Alhebshi - 2022 - International Journal of  Energy Research - Wiley Online Library
Recent advances in constructing heterojunctions of binary semiconductor photocatalysts for visible light responsive CO2 reduction to energy efficient fuels: A review - Alhebshi - 2022 - International Journal of Energy Research - Wiley Online Library

Photocatalytic hydrogen production using FeTiO3 concentrates modified by  high energy ball milling and the presence of Mg precursors | SpringerLink
Photocatalytic hydrogen production using FeTiO3 concentrates modified by high energy ball milling and the presence of Mg precursors | SpringerLink

Ferromagnetic photocatalysts of FeTiO3–Fe2O3 nanocomposites
Ferromagnetic photocatalysts of FeTiO3–Fe2O3 nanocomposites

Visible-Light Photochemical Activity of Heterostructured Core−Shell  Materials Composed of Selected Ternary Titanates and Ferri
Visible-Light Photochemical Activity of Heterostructured Core−Shell Materials Composed of Selected Ternary Titanates and Ferri

Preparation and characterization of MnTiO3, FeTiO3, and CoTiO3  nanoparticles and investigation various applications: a review |  SpringerLink
Preparation and characterization of MnTiO3, FeTiO3, and CoTiO3 nanoparticles and investigation various applications: a review | SpringerLink

Orbital structure of FeTiO3 ilmenite investigated with  polarization-dependent X-ray absorption spectroscopy and band structure  calculations: Applied Physics Letters: Vol 102, No 4
Orbital structure of FeTiO3 ilmenite investigated with polarization-dependent X-ray absorption spectroscopy and band structure calculations: Applied Physics Letters: Vol 102, No 4

PDF] Orbital structure of FeTiO3 ilmenite investigated with  polarization-dependent X-ray absorption spectroscopy and band structure  calculations | Semantic Scholar
PDF] Orbital structure of FeTiO3 ilmenite investigated with polarization-dependent X-ray absorption spectroscopy and band structure calculations | Semantic Scholar

Structure and properties of ilmenite from first principles
Structure and properties of ilmenite from first principles

Minerals | Free Full-Text | Theoretical Modeling of Defects, Dopants, and  Diffusion in the Mineral Ilmenite
Minerals | Free Full-Text | Theoretical Modeling of Defects, Dopants, and Diffusion in the Mineral Ilmenite