nanocomposite material

nanocomposite material

[‚nan·ō·kəm′päz·ət mə‚tir·ē·əl]
McGraw-Hill Dictionary of Scientific & Technical Terms, 6E, Copyright © 2003 by The McGraw-Hill Companies, Inc.
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"The flexibility of the nanocomposite material means it can be shaped to fit any odd or underutilized space, and the large surface area means any heat produced is easily dissipated," said Choi.
The builder has a variety of equipment, including the sPro 230 (maximum build envelope capacity: 22 x 22 x 30 in.) for selective laser sintering (SLS); the ProX 800 for producing tooling for carbon fiber forms with Accura Bluestone, a nanocomposite material; and the ProX DMP 320 using 3DXpert software for producing titanium parts including exhaust collectors, mufflers, uprights and hubs.
Also receiving a Gold Award was Shunsuke Fukami, Associate Professor at the Tohoku University, for his creation of an analog nano-spin memory device using CoPt-based nanocomposite material and an application of brain-like information processing.
Seifalian, "Novel POSS-PCU Nanocomposite Material as a Biocompatible Coating for Quantum Dots," Bioconjugate Chemistry, vol.
The nanocomposite material showed major predominant consistent reflection peaks at 2[theta] values between the range (20-80[degrees]) differently indexed to {111}, {200}, {202}, {311}, and {222} assigned to cubical crystal planes of Ag (reference code: 96-901-2962), together with an extended reflection labelled pattern {420} associated with the cubical system phase of MgO (reference code: 96-901-3264) which shifted to a higher prominent 2[theta] value deposited on Ag-MgO plane lattice interaction.
Lamellar periodical microstructure (period - 4 [micro]m and depth - 574 nm) was formed in PZT nanocomposite material using hot embossing technique at 100[degrees]C temperature, 5 atm pressure and 10 s of holding time.
The shrimp shell derivative, Chitosan, will be used to make a nanocomposite material which is degradable, affordable and suitable for shopping bags and food packaging.
The figure shows that the increase in the DC electrical conductivity of (PVA-PEG-PVP-MgO) nanocomposites, this behavior can be related to the fact that at high concentration of magnesium oxide nanoparticles, the electrical conductivity of nanocomposite material may be dominated by the electrical conductivity of the magnesium oxide nanoparticles whereas at low concentration of magnesium oxide nanoparticles both polymer and magnesium oxide nanoparticles govern the electrical conductivity of the nanocomposite.
On the other hand the utilization of active matrices with magnetic or ferroelectric properties makes it possible to produce a new type of nanocomposite material (NCM) with different spatially separated, but interacted, order parameters.
In this work, we used the adsorption layer on the surface of kaolin as a reactor to prepare Ag/Kaolin nanocomposite material. The adsorption behavior of acid cyanine 5R onto Ag/Kaolin was studied.