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Nanostructured composites composite properties

Nanostructured Composites Structure, Properties, and Applications in Electrochemistry... [Pg.201]

Application of the above techniques has enabled the synthesis of a range of nanostructured materials with tunable composition, physical properties, and... [Pg.289]

S. Orimo, H. Fujii, K. Ikeda, Notable hydriding properties of a nanostructured composite material of the Mg Ni-H system synthesized by reactive mechanical grinding, Acta mater. 45 (1997) 331-341. [Pg.186]

M. Au, Hydrogen storage properties of magnesium based nanostructured/amorphous composite materials, Mater. Res. Soc. Symp. Proc. 801 (2004) BBl.5.1-1.5.14. [Pg.187]

Understanding the physical state of food materials requires that food composition and properties of individual food components and their interactions with each other are well known. The physical characterization of a food system needs to consider all components within the system, the molecular environment of the components and all micro- and nanostructural aspects of factors contributing to the properties of the material. The first studies referring to glass formation by food components were those on dairy powders (Supplee 1926) and glucose (Parks and Thomas 1934). These... [Pg.67]

Huang, J., and Li, H. (2014) Hydroxyapatite/graphene-nanosheet composite coatings deposited by vacuum cold spray for biomedical applications inherited nanostructure and enhanced properties. Carbon, 67, 250-259. [Pg.241]

Anodization of Al-Ti alloys with a Ti concentration in the range of 1 -35 % has been performed to fabricate a composite nanoporous oxide. An increase of the Ti content is found to enlarge few times the size of pores. Composite oxide films with the weight fraction of the titanium oxide exciding that of the aluminum oxide have been formed for the first time. The new nanostructured material has properties as alumina (AI2O3) as well as titanium oxide. [Pg.249]

V. M. Shalaev, Optical Nonlinearities of Fractal Composites, Optical Properties of Nanostructured Random Media. Top. [Pg.412]

This review covers the active research area of processing functional conductive nanofibers and nanostructures with various compositions and properties by means of the electrospinning method. It is also focuses on the unique properties of electrospun conductive nanostructures that can be utilized to improve existing applications of conductive materials and on the various possibilities to meet the requirements of a number of novel applications. [Pg.201]

Being in the nanotechnology era, novel nanostructured composite materials are expected to be designed showing improved properties due to nanostructuration. Moreover, composite electrodes from expensive metals (gold, platinum, etc.) can be prepared using the NPs as conductive fillers, with enhanced properties but at lower prices compared to their pure conductor counterparts. [Pg.71]

Electrochemical deposition has been shown to be a rather effective method of transferring model BCP morphologies into functional materials. The first applications of which in real devices already show encouraging optoelectronic properties and performances competitive with well-developed state-of-the-art mesostructures. However, it is likely that the real benefits of this technique, that is, the enormous diversity of accessible functional materials and nanostructured composites, will only emerge with further exploration of previously inaccessible material systems. [Pg.103]


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See also in sourсe #XX -- [ Pg.140 , Pg.142 ]




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