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Updated: Aug 29, 2025

Molten-Salt Synthesis of Complex Metal Oxide Nanoparticles
Published on: October 27, 2018
Modernized Synthesis Technique of Pr2NiO4+δ-Based Complex Oxides Using Low-Temperature Salt Melts
Artem P Tarutin1,2, Stanislav A Baratov2, Dmitry A Medvedev1,2
1Laboratory of Electrochemical Devices Based on Solid Oxide Proton Electrolytes, Institute of High, Temperature Electrochemistry, Ekaterinburg 620990, Russia.
Researchers developed a new, cost-effective method for preparing Pr2NiO4+δ materials. This novel co-melting and decomposition technique yields highly dispersed, single-phase powders at lower temperatures, advancing Ruddlesden-Popper oxide synthesis.
Area of Science:
- Materials Science
- Solid-State Chemistry
- Electrochemistry
Background:
- Layered lanthanide nickelates are promising electrode materials for solid oxide fuel cells (SOFCs) and electrolysis cells (SECs).
- Conventional synthesis methods (solid-state, solution-assisted) for these materials present challenges.
- Efficient and cost-effective preparation routes are crucial for their widespread application.
Purpose of the Study:
- To introduce a novel, simple, and straightforward synthesis method for Pr2NiO4+δ materials.
- To overcome limitations associated with existing preparation techniques.
- To enable cost-effective production of Ruddlesden-Popper oxide phases.
Main Methods:
- Co-melting of initial nitrate components.
- High-temperature decomposition of the resulting mixture.
- Characterization of the synthesized Pr2NiO4+δ powders.
Main Results:
- Successful preparation of Pr2NiO4+δ materials using the novel co-melting and decomposition approach.
- Obtained highly dispersed and single-phase powders.
- Achieved synthesis at a reduced temperature of 1050 °C, lower than conventional methods.
Conclusions:
- The developed co-melting and decomposition method offers significant advantages over traditional techniques.
- This approach enables efficient, cost-effective synthesis of Pr2NiO4+δ powders.
- The findings open new avenues for producing Ruddlesden-Popper oxide phases for electrochemical devices.
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