Laser ablation condensation and phase change of Ni1−xCoxO nanoparticles
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Condensed Matter Physics
Reference33 articles.
1. Oxidation–decomposition facilitated reorientation of nanoparticles in reactively sintered (Ni0.33Co0.67)1−δO polycrystals
2. M.Y. Li, Ph.D. Thesis, National Sun Yat-sen University, Taiwan, ROC, 2005.
3. A Paracrystalline Description of Defect Distributions in Wüstite, Fe1-xO
4. Annealing-induced defect clustering at Ni1−xOY-partially-stabilized ZrO2 interfaces
5. Defect Clusters and Superstructures of Zr4+Dissolved Ni1−xO
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1. Novel coalescence-driven grain-growth mechanism during annealing/spark plasma sintering of NiO nanocrystals;Journal of the European Ceramic Society;2017-12
2. Laser ablation synthesis of Si-overdoped Ni1−x O with rocksalt-type derived superstructures and tailored optical properties;Applied Physics A;2017-03-10
3. Laser ablation synthesis of C–Si–H-doped Co1–xO with novel (hkl)-specific paracrystal, Co interlayer and lattice shuffling;Applied Physics A;2016-03-14
4. Dense Mg x Ni1−x O nanocubes with special grain boundaries and paracrystalline distribution of defect clusters by pulsed laser ablation;Applied Physics A;2015-06-24
5. (hkl)-Specific defects of MgO–CoO alloy produced by pulsed laser ablation in water;CrystEngComm;2015
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