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Vapor-phase formation of magnetic

ZACHARIAH ET AL. Vapor-Phase Formation of Magnetic Nanocomposite 43... [Pg.43]

Aqueous polymeric solutions, Au particle spontaneous synthesis, 128-135 Atomistic modeling, vapor-phase formation of magnetic nanocomposite, 60-61,62/... [Pg.397]

In Situ Characterization and Modeling of the Vapor-Phase Formation of a Magnetic Nanocomposite... [Pg.42]

Formation kinetics will depend upon the concentrations present in the vapor phase, properties of the encapsulated elements or compounds (such as carbon solubility and carbide formation), buffer gas conditions that controls cooling rates and the possibility of independent carbon condensation (polyaromatic carbon), and other process variables such as temperature and pressure. Catalytic effects can be present not only in the segregation of carbon in solution but also in the kinetic pathways of independent carbon species formed. Magnetic and electric fields can interact in these processes through the presence of paramagnetic (free radicals) and polar species. [Pg.844]

Metal catalyzed chemical vapor deposition has become the most versatile and therefore most important whisker growth process. This process and other vapor phase processes facilitate the formation of uniform and reproducible products for demanding applications, where they offer new premium electrical, magnetic, dielectric and near theoretical mechanical properties [1-2]. [Pg.11]


See other pages where Vapor-phase formation of magnetic is mentioned: [Pg.81]    [Pg.340]    [Pg.385]    [Pg.128]    [Pg.122]    [Pg.191]    [Pg.119]    [Pg.289]    [Pg.97]    [Pg.104]    [Pg.453]    [Pg.212]   


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Vapor-phase formation of magnetic nanocomposite

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