nanophysics coherence and transport, 2005, p 641

nanophysics. coherence and transport, 2005, p.641

nanophysics. coherence and transport, 2005, p.641

... 94 Appendix B. Polarization bubble in 1D 95 Appendix B.1. Small q 95 Appendix B.2. q near 2k F 97 Appendix C. Some details of bosonization procedure 98 Appendix C.1. Anomalous commutators 98 Appendix ... theseconcepts with a particular emphasis on spineffects and superconductivity in nanoparticles, going to the limit of single-molecule transistors. Atomic point contacts both in the normal...

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641 147 0
mechanical properties of polymers based on nanostructure and morphology, 2005, p.738

mechanical properties of polymers based on nanostructure and morphology, 2005, p.738

... third part, “Mechanical Properties Improvement and Frac- ture Behavior,” offers selected examples of heterogeneous polymers with improved mechanical properties and fracture behavior. Struc- ture-property ... levels of structure and morphol- ogy on properties. It additionally aims to provide a better under- standing on new effects and new possibilities to improve mechanical properties...

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738 2.8K 0
microflows and nanoflows. fundamentals and simulation, 2005, p.823

microflows and nanoflows. fundamentals and simulation, 2005, p.823

... incorporates the shape effectsby an anisotropic repulsivecore and anisotropic dispersioninteractions.For an appropriatechoice of these parameters a reasonable description ofrealliquids is possibl e.Forexample, using ... microspheres were manipulated byopticaltraps to pump fluids.These devices are about the size ofahuman red bloodcell; see Figure 1.6. These colloidal micropumps are based onpos...

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823 261 0
ordered porous nanostructures and applications, 2005, p.211

ordered porous nanostructures and applications, 2005, p.211

... n-type silicon electrodes. Ordered Porous Nanostructures and Applications Edited by Ralf B. Wehrspohn Department of Physics University of Paderborn Paderborn, Germany PORES IN N-TYPE SILICON 9 process ... vertical design and the feasible pore aspect ratios is limited. Today’s applications of macropore arrays range from electronic applications such as capacitors to optical filters and bio...

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211 211 0
nanoscale science and technology, 2005, p.473

nanoscale science and technology, 2005, p.473

... impurities 268 5.6.4 Porosity 269 5.6.5 Non-conventional processing 270 5.7 Mechanical properties 272 5.7.1 Hardness and strength 272 5.7.2 Ductility and toughness 274 5.7.3 Creep and superplasticity ... Ferromagnetic properties 276 5.8.1 Fundamental magnetic properties 276 5.8.2 Nanocomposite soft magnetic materials 277 5.8.3 Hard magnetic materials 277 5.9 Catalytic properties 278 5.1...

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473 200 0
nanotechnology and nanoelectronics, 2005, p.276

nanotechnology and nanoelectronics, 2005, p.276

... Polydimethylsiloxane PE Plasma etching PECVD Plasma-enhanced chemical vapor deposition PET Polyethyleneterephthalate PL Photoluminescence PLAD Plasma doped PMMA Polymethylmethacrylate PREVAIL Projection ... details which are even more specific. For example, optical properties are not only determined through the band gap but through the specific dependency of the energy bands on the w...

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276 361 0
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