4.6 Article

Calcium vapor synthesis of extremely coercive SmCo5

期刊

RSC ADVANCES
卷 12, 期 6, 页码 3721-3728

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/d1ra07244g

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  1. Critical Materials Institute, an Energy Innovation Hub - U.S. Department of Energy (DOE), Office of Energy Efficiency and Renewable Energy, Advanced Manufacturing Office
  2. LLNL [DE-AC52-07NA27344]

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Exceptionally coercive SmCo5 particles are produced through calcium vapor reduction, which have record-breaking room temperature coercivity and can maintain stability at elevated temperatures. These particles can be used as building blocks for traditional or advanced manufacturing techniques, providing consistent performance across a wide range of temperatures.
Exceptionally coercive SmCo5 particles are produced through calcium vapor reduction of SmCo5O9 powders synthesized by flame spray pyrolysis. The resulting powders are composed of oblate hexagonal particles approximately 2 microns across with smooth surfaces. This microstructure yields record-breaking room temperature coercivity H-c,H-i >80 kOe, or >60 kOe when combined with advanced manufacturing approaches such as electrophoretic deposition or molding with tetraglyme inks. These techniques enable straightforward low-loss fabrication of bulk parts. The high coercivity is extremely robust at elevated temperatures, exceeding 10 kOe even at 600 degrees C. The oxide precursor approach removes the need for strict environmental control during synthesis that is common to other nanoparticle-based routes and can readily be scaled to kilogram quantities of feedstock production. Magnet powders produced by calcium vapor reduction can thus function as the building blocks for traditional or advanced manufacturing techniques, while the high coercivity enables consistent performance across a wide range of temperatures.

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