nanoengineered nanofibrous materials, 2004, p 534

nanoengineered nanofibrous materials, 2004, p.534

nanoengineered nanofibrous materials, 2004, p.534

... acid PANi/ PEO chloroform HEMA 50:50 formic acid/ethanol CNT/PAN DMF GNP/PAN DMF Polyurathane DMF Nylon-6 95:5 HFIP/DMF Poly(ethylene-co-vinyl alcohol) 2-propanol/water Table 2. Polymer ... Nanofluidics and Composites; and the fifth chapter deals with recent developments in Nanomaterials, Nanoparticles, and Nanostructures. All papers in this book have been peer-reviewed prior t...

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nanocrystalline materials, 2004, p.357

nanocrystalline materials, 2004, p.357

... of metal ions into polymer fibers makes it possible to produce colored lightguides suitable for application in computer equipment. The optical properties of polymers with fillers of nanoparticles of ... came from military and space authorities of the USA, former USSR, European countries, and Japan, who supported appropriate research projects. If the first simplest chips (1959) consisted of te...

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357 510 0
the chemistry of nanomaterials, 2004, p.761

the chemistry of nanomaterials, 2004, p.761

... Phosphates 595 18.4.2 Phosphates of Gallium and Indium 598 18.4.3 Tin(II) Phosphates and Antimony(III) Phosphates 599 18.4.4 Transition Metal Phosphates 600 18.4.4.1 Molybdenum and Vanadium Phosphates ... Vanadium Phosphates 600 18.4.4.2 Iron Phosphates 601 18.4.4.3 Cobalt(II) and Manganese Phosphates 603 18.4.4.4 Copper and Nickel Phosphates 603 18.4.4.5 Zirconium and Titanium Phosphates 605...

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761 388 0
the chemistry of nanomaterials. synthesis, properties and applications, 2004, p.761

the chemistry of nanomaterials. synthesis, properties and applications, 2004, p.761

... Phosphates 595 18.4.2 Phosphates of Gallium and Indium 598 18.4.3 Tin(II) Phosphates and Antimony(III) Phosphates 599 18.4.4 Transition Metal Phosphates 600 18.4.4.1 Molybdenum and Vanadium Phosphates ... Vanadium Phosphates 600 18.4.4.2 Iron Phosphates 601 18.4.4.3 Cobalt(II) and Manganese Phosphates 603 18.4.4.4 Copper and Nickel Phosphates 603 18.4.4.5 Zirconium and Titanium Phosphates 605...

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761 541 0
nano and microstructural design of advanced materials, 2003, p.317

nano and microstructural design of advanced materials, 2003, p.317

... to point out that microstructures generated by spinodal decomposition were not 6 R. Gronslcy susceptible to the formation of detrimental PFZs, and he proposed employing spinodal decomposition ... semiconductors, superconductors, magnetic materials, composite materials, polymeric materials, and even organic materials appear in his manuscripts, along with a widely varied range of e...

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polyoxometalate chemistry for nano-composite design, 2004, p.231

polyoxometalate chemistry for nano-composite design, 2004, p.231

... amount of phosphate in the presence of air, a stepwise assembly process takes place leading to this new type of composite material, i.e. the neutral layer compound 10 . Chemistry with Nanoparticles 9 While ... condensed dimer of units The spectrum in Figure 2 reveals the presence of (peak d , 8.5 ppm) and (peaks a and e , 11.3 and -10.1 ppm respectively). The remaining three peaks, b , c , a...

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semiconductor and metal nanocrystals, 2004, p.484

semiconductor and metal nanocrystals, 2004, p.484

... selenium pre- cursor prepared simply from Se powder dissolved in trioctylphosphine (TOP) or tributylphosphine (TB P) . Initially, the surfactant–solvent combination, technical-grade trioctylphosphine ... ed temperatures [13]. Very high PL efficiencies (up to 50%) are reported for HgTe NQDs prepared in water [25]. However, the as-prepared samples y ield approximately featureless absorp- Copyrig...

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what is what in the nanoworld. a handbook on nanoscience and nanotechnology, 2004, p.350

what is what in the nanoworld. a handbook on nanoscience and nanotechnology, 2004, p.350

... as is usually performed in STM, controls the transferring process. Three approaches distinguished by the physical mechanisms employed have becn proposed for perpendicular manipulations of ... from field ion mi- croscopy. The analyzed sample is prepared in the form of a sharp tip. A voltage pulse is applied to the tip causing atoms on the surface of the tip to be ejected. The atoms ......

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characterization of nanophase materials, 2000, p.420

characterization of nanophase materials, 2000, p.420

... transfer function PEELS parallel electron energy-loss spectroscopy PL photoluminescence POA phase object approximation PS polystyrene PSD position-sensitive detector PSP poly(styrenephosphonate diethyl ... micro- scopy 38 ± photonic crystals 6 protective coating 5, 74, 142 protective micelles, gold 200 protic solvents 326 proton dipolar decoupling 246 pump probe spectroscopy, optical 198 f pu...

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nanostructure control of materials, 2006, p.372

nanostructure control of materials, 2006, p.372

... and potential applications. Currently the main applications, as described in Chapter 1, are nanoparticles used in composites, where the particles are encapsulated in a matrix. A very specific example of ... may overlap. Consequently, the choice of particle size, from a product design perspective, is directly influenced by process economics, capability to supply and the adequacy and type of pe...

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