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Composite structure functionalization nanocomposites

Metal-carbon nanocomposite films possessing specific physical properties are recognized to be of current interest for different applications in electronics, mechanics [1-2]. The key property of nanocomposite films is the structure and size of metal particles and carbon matrix [3]. Therefore, the aim of this paper is to study the correlation between the phase composition, structure and tribological properties of Ni/a-C H nanocomposite films formed by microwave plasma-assisted deposition technique as a function of the C2H2 concentration in Ar+C2H2 gas mixtures varying from 0 to 100 %. [Pg.487]

Layered materials are of special interest for bio-immobilization due to the accessibility of large internal and external surface areas, potential to confine biomolecules within regularly organized interlayer spaces, and processing of colloidal dispersions for the fabrication of protein-clay films for electrochemical catalysis [83-90], These studies indicate that layered materials can serve as efficient support matrices to maintain the native structure and function of the immobilized biomolecules. Current trends in the synthesis of functional biopolymer nano composites based on layered materials (specifically layered double hydroxides) have been discussed in excellent reviews by Ruiz-Hitzky [5] and Duan [6] herein we focus specifically on the fabrication of bio-inorganic lamellar nanocomposites based on the exfoliation and ordered restacking of aminopropyl-functionalized magnesium phyllosilicate (AMP) in the presence of various biomolecules [91]. [Pg.248]


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See also in sourсe #XX -- [ Pg.134 , Pg.136 ]




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Composite functionals

Composite nanocomposite

Composite structure functionalization

Composite structures

Composites nanocomposites

Functional composites

Functional nanocomposites

Structural composition

Structure composition

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