Applied Physics Letters · 1990 · 43 citations · 6 references
EngineeringBottom-up SynthesisCeramic PowdersStructural MaterialsMetal Matrix CompositeMaterials FabricationMolybdenum ParticlesMaterials ScienceMaterials EngineeringParticulate ReinforcementPowder MetallurgyNanomanufacturingNanocomposite SynthesisPowder SynthesisMicrostructureNanomaterialsApplied PhysicsThermal GradientNormal SputteringNanocompositesNanocompositeMaterial Preparation
A new method is presented which circumvents the usual thermodynamic limitations (alloying and compound formation) in fabricating phase-separated materials. This opens whole new classes of materials that can be prepared as particulate composites.This method utilizes sputtering at high pressures (0.2–0.6 Torr) in a thermal gradient to produce nanoscale (<15 nm diameter) particles, which are then embedded in a matrix produced by normal sputtering. The microstructure and microhardness of 0.5-μm-thick composites of molybdenum particles (3–12 nm average particle size) in aluminum are presented as examples. This system cannot be prepared by the conventional phase separation technique of cosputtering.
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C. G. Granqvist, R. A. Buhrman · Journal of Applied Physics · 1976 · 1.6K citations
Kinetic and Thermodynamic Properties of Nanocrystalline Materials
R. S. Averback, Horst Hahn, H.J. Hö fler et al. · MRS Proceedings · 1989 · 48 citations
Materials Science, Nanocrystalline Materials, Engineering +5
Phase-separated Fe and Co particles in a BN matrix
A. S. Edelstein, B. N. Das, Ronald Holtz et al. · Journal of Applied Physics · 1987 · 30 citations