Content tagged with: Electrodeposition and Carbon nanotubesFound 5 matches.
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Filter content on additional tags:Carbon nanotube synthesis, Electro-less deposition, Nanofibers, Thin films, Adsorption, Chemical vapor deposition (CVD), Dip Coating, Electrochemical anodization, Graphene, Nanocrystals, Nanomotor/ nanoactuator, Nanoparticle sintering, Nanopowders, Optical, Polymer-nanoparticle dispersion, Polymeric, Silicon nanotubes, Silicon nanowires, Surfactant-assisted mesoporous material synthesis, Synthesis in nanotemplates, Atomic force microscopy (AFM), Biolinker assembly, Biomineralization, Block copolymer chemical derivatives, Block copolymer lithography, Block copolymers, Ceramic powder techniques, Chemical surface functionalization, Co-deposition, Colloidal crystallization, Contact printing, Current-voltage (IV), Cyclic voltammetry (CV), Education, Electrostatic driven assembly, Embossing/Imprinting, Energy and Utilities, Evaporation, Ferrofluids, Fluidic alignment, Focused ion beam, Fourier transform infrared spectroscopy (FTIR), Fullerenes, Inorganic nanotubes, Intercalated materials, Interference lithography, Kraft process, Langmuir-Blodgett, Laser induced fluorescence (LIF), Liquid suspension, Magnetic, Materials and Chemical Industries and Green Manufacturing, Mechanical milling and sintering, Microfluidic deposition, Milling, Miscellaneous Technologies, Multilayer film processes, Multilayer methods, Nanobiocomposites, Nanodiamonds, Nanoelectronic circuits and architectures, Nanofiber precipitation, Nanomagnet arrays, Nanoparticle spray coating, Nanopores, Nanorods, Nanosheets, Nanoshells, Nanospheres, Nanowhiskers, Near-field scanning optical microscopy (NSOM), Optical emission spectroscopy (OES), P-N junction nanowires, Pharmacological synthesis techniques, Photoluminescence (PL) spectroscopy, Plasmonic lithography, Policy and Regulation, Polyelectrolyte layer-by-layer, Quantum confinement, Raman spectroscopy, Reactive ion etching, Reverse miscelle technique, Scanning interferometric apertureless microscope, Self assembled monolayers, Self-assembled monolayers (SAM), Semiconductor nanowires, Shape based assembly, Sol gel, Sol gel synthesis methods, Spin coating, Sputtering, Structural, Supermolecular chemical assembly, Surface polymerization, Surface-to-surface transfer, Thermal conductivity, Vapor-liquid-solid (VLS) nanowire synthesis, Wet etching
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This project is supported by theNational Science FoundationCMMI-1025020Center for Hierarchical Manufacturing