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epsilon-phase iron oxide Archives - The American Ceramic Society
epsilon-phase iron oxide Archives - The American Ceramic Society

Development of a magnetic recording tape using epsilon iron oxide - School  of Science, the University of Tokyo
Development of a magnetic recording tape using epsilon iron oxide - School of Science, the University of Tokyo

Rare iron oxide could be combined with 2-D materials for electronic,  spintronic devices
Rare iron oxide could be combined with 2-D materials for electronic, spintronic devices

ε-Fe2O3: An Advanced Nanomaterial Exhibiting Giant Coercive Field,  Millimeter-Wave Ferromagnetic Resonance, and Magnetoelectric Coupling |  Chemistry of Materials
ε-Fe2O3: An Advanced Nanomaterial Exhibiting Giant Coercive Field, Millimeter-Wave Ferromagnetic Resonance, and Magnetoelectric Coupling | Chemistry of Materials

Berkeley Lab Researchers Help Discover Rare Form of Iron Oxide in Ancient  Chinese Pottery - Berkeley Lab – Berkeley Lab News Center
Berkeley Lab Researchers Help Discover Rare Form of Iron Oxide in Ancient Chinese Pottery - Berkeley Lab – Berkeley Lab News Center

Facile synthesis of epsilon iron oxides via spray drying for  millimeter-wave absorption - Chemical Communications (RSC Publishing)  DOI:10.1039/D2CC03168J
Facile synthesis of epsilon iron oxides via spray drying for millimeter-wave absorption - Chemical Communications (RSC Publishing) DOI:10.1039/D2CC03168J

Development of a magnetic recording tape using epsilon iron oxide - School  of Science, the University of Tokyo
Development of a magnetic recording tape using epsilon iron oxide - School of Science, the University of Tokyo

Advances in magnetic films of epsilon-iron oxide toward next-generation  high-density recording media - Dalton Transactions (RSC Publishing)  DOI:10.1039/D0DT03460F
Advances in magnetic films of epsilon-iron oxide toward next-generation high-density recording media - Dalton Transactions (RSC Publishing) DOI:10.1039/D0DT03460F

Epsilon iron oxide: Origin of the high coercivity stable low Curie  temperature magnetic phase found in heated archeological materials -  López‐Sánchez - 2017 - Geochemistry, Geophysics, Geosystems - Wiley Online  Library
Epsilon iron oxide: Origin of the high coercivity stable low Curie temperature magnetic phase found in heated archeological materials - López‐Sánchez - 2017 - Geochemistry, Geophysics, Geosystems - Wiley Online Library

Allotropes of iron - Wikipedia
Allotropes of iron - Wikipedia

a) Dependence of the magnetization of the ε-Fe 2 O 3 thin film with... |  Download Scientific Diagram
a) Dependence of the magnetization of the ε-Fe 2 O 3 thin film with... | Download Scientific Diagram

Iron(III) oxide - Wikipedia
Iron(III) oxide - Wikipedia

Flexible Epsilon Iron Oxide Thin Films | ACS Applied Materials & Interfaces
Flexible Epsilon Iron Oxide Thin Films | ACS Applied Materials & Interfaces

Epsilon iron oxide: Origin of the high coercivity stable low Curie  temperature magnetic phase found in heated archeological materials -  López‐Sánchez - 2017 - Geochemistry, Geophysics, Geosystems - Wiley Online  Library
Epsilon iron oxide: Origin of the high coercivity stable low Curie temperature magnetic phase found in heated archeological materials - López‐Sánchez - 2017 - Geochemistry, Geophysics, Geosystems - Wiley Online Library

Optical properties of epsilon iron oxide nanoparticles in the millim
Optical properties of epsilon iron oxide nanoparticles in the millim

Materials for 6G technology: Scientists refine synthesis of rare iron oxide  phase - The American Ceramic Society
Materials for 6G technology: Scientists refine synthesis of rare iron oxide phase - The American Ceramic Society

Iron sesquioxide under pressure: formation of a new iron oxide polymorph
Iron sesquioxide under pressure: formation of a new iron oxide polymorph

Facile synthesis of epsilon iron oxides via spray drying for  millimeter-wave absorption - Chemical Communications (RSC Publishing)
Facile synthesis of epsilon iron oxides via spray drying for millimeter-wave absorption - Chemical Communications (RSC Publishing)

Rice U. lab grows stable, ultrathin magnets
Rice U. lab grows stable, ultrathin magnets

Advances in magnetic films of epsilon-iron oxide toward next-generation  high-density recording media - Dalton Transactions (RSC Publishing)  DOI:10.1039/D0DT03460F
Advances in magnetic films of epsilon-iron oxide toward next-generation high-density recording media - Dalton Transactions (RSC Publishing) DOI:10.1039/D0DT03460F

New magnetic material can record even more data - Materials Today
New magnetic material can record even more data - Materials Today

Scientists obtain magnetic nanopowder for 6G technology — News MIPT
Scientists obtain magnetic nanopowder for 6G technology — News MIPT

Crafting a Next-Generation Device Using Iron Oxide Thin Film: A Review |  Crystal Growth & Design
Crafting a Next-Generation Device Using Iron Oxide Thin Film: A Review | Crystal Growth & Design

ICMAB - A new iron oxide polymorph found at high pressures
ICMAB - A new iron oxide polymorph found at high pressures

Epsilon-Iron(III) Oxide [IMAGE] | EurekAlert! Science News Releases
Epsilon-Iron(III) Oxide [IMAGE] | EurekAlert! Science News Releases

A new magnetic material and recording process to vastly increase data  capacity
A new magnetic material and recording process to vastly increase data capacity

Rapid Faraday Rotation on ε-Iron Oxide Magnetic Nanoparticles by Visible  and Terahertz Pulsed Light | Journal of the American Chemical Society
Rapid Faraday Rotation on ε-Iron Oxide Magnetic Nanoparticles by Visible and Terahertz Pulsed Light | Journal of the American Chemical Society