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Title: Synthesis of α Fe 16 N 2 Compound Anisotropic Magnet by the Strained-Wire Method

Journal Article · · Physical Review Applied

Sponsoring Organization:
USDOE Advanced Research Projects Agency - Energy (ARPA-E)
Grant/Contract Number:
0472-1595
OSTI ID:
1298335
Journal Information:
Physical Review Applied, Journal Name: Physical Review Applied Vol. 6 Journal Issue: 2; ISSN 2331-7019
Publisher:
American Physical SocietyCopyright Statement
Country of Publication:
United States
Language:
English
Citation Metrics:
Cited by: 24 works
Citation information provided by
Web of Science

References (27)

Nanomagnetics journal May 2003
Preparation of an α″-Fe 16 N 2 Magnet via a Ball Milling and Shock Compaction Approach : Preparation of an α″-Fe 16 N 2 journal December 2015
Synthesis and properties of α″‐Fe16N2 in magnetic particles journal May 1994
Synthesis of Fe16N2 compound Free-Standing Foils with 20 MGOe Magnetic Energy Product by Nitrogen Ion-Implantation journal May 2016
The occurrence and the crystal structure of α" -iron nitride; a new type of interstitial alloy formed during the tempering of nitrogen-martensite journal August 1951
Size-Dependent Grain-Growth Kinetics Observed in Nanocrystalline Fe journal January 2001
A method to evaluate α ″-Fe 16 N 2 volume ratio in FeN bulk material by XPS journal November 2015
Mechanically-assisted nanocrystallization and defects in amorphous alloys: A high-resolution transmission electron microscopy study journal February 2006
Facile synthesis of single-phase spherical α″-Fe 16 N 2 /Al 2 O 3 core-shell nanoparticles via a gas-phase method journal April 2013
αʺ-Fe16N2 phase epitaxially grown by sputter beam method journal January 1996
Epitaxial single crystal Fe16N2 films grown by facing targets sputtering journal January 1996
Search for giant magnetic moments in ion-beam-synthesized α″-Fe16N2 journal June 1996
Challenge to the Synthesis of α''-Fe 16 N 2 Compound Nanoparticle with High Saturation Magnetization for Rare Earth Free New Permanent Magnetic Material journal July 2013
Effects of film thickness on formation processes of Fe16N2 in nitrogen ion-implanted Fe films journal May 1998
Nitrogen‐implantation‐induced transformation of iron to crystalline Fe 16 N 2 in epitaxial iron films journal June 1989
Magnetic and physical microstructure of Fe16N2 films grown epitaxially on Si(001) journal April 1997
New Magnetic Material Having Ultrahigh Magnetic Moment journal June 1972
Magnetism of α′-FeN alloys and α″-(Fe16N2) Fe nitrides journal July 1994
Low-temperature extension of the lehrer diagram and the iron-nitrogen phase diagram journal August 2002
The magnetization of bulk α‘Fe16N2 (invited) journal November 1994
Opportunities and challenges for a sustainable energy future journal August 2012
Magnetic and Mössbauer studies of single‐crystal Fe16N2 and Fe‐N martensite films epitaxially grown by molecular beam epitaxy (invited) journal November 1994
Structure and magnetic moment of Fe16N2 sputtered film journal October 1997
Fabrication of $\hbox{Fe}_{16}\hbox{N}_{2}$ Films by Sputtering Process and Experimental Investigation of Origin of Giant Saturation Magnetization in $\hbox{Fe}_{16}\hbox{N}_{2}$ journal May 2012
Magnetic and electrical properties of single-phase, single-crystal Fe16N2 films epitaxially grown by molecular beam epitaxy (invited) journal January 1996
High-pressure sintering behavior of α″-Fe 16 N 2 nanopowder journal March 2014
9 T high magnetic field annealing effects on FeN bulk sample journal May 2014