High-temperature oxidation resistance and thermal stability of higher manganese silicide powder synthesized by pack cementation
Author:
Funder
State Scholarships Foundation
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference105 articles.
1. Thermoelectrics of Transition Metal Silicides;Fedorov,2006
2. Modulated crystal structure of chimney-ladder higher manganese silicides MnSiγ (γ ~ 1.74);Miyazaki;Phys. Rev. B,2008
3. Synthesis of higher manganese silicides by pack cementation;Teknetzi;AIP Conf. Proc.,2019
4. Structure and thermoelectric properties of higher manganese silicides synthesized by pack cementation;Teknetzi;Ceram. Int.,2021
5. Glass-ceramic oxidation protection of higher manganese silicide thermoelectrics;Salvo;J. Eur. Ceram. Soc.,2019
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1. Discordant Doping and Labile Silicon Atoms in Higher Manganese Silicide;ACS Applied Energy Materials;2023-09-20
2. Effect of ball milling time on the formation and thermal properties of Ag2Se and Cu2Se compounds;Journal of Thermal Analysis and Calorimetry;2023-08-09
3. Charge-Compensated (V, Ru) Co-Substitution in Higher Manganese Silicide Single Crystals for Enhanced Thermoelectric and Mechanical Performance;ACS Applied Energy Materials;2023-03-15
4. Relevance of Solidification Kinetics for Enhanced Thermoelectric Performance in Al-Doped Higher Manganese Silicides;ACS Applied Materials & Interfaces;2022-11-12
5. Synthesis of cyclic carbonates of different epoxides using CO2 as a C1 building block over Ag/TUD-1 mesoporous silica catalyst: A solvent free approach;Molecular Catalysis;2022-04
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