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New nanotechnology techniques have created new nanocrystalline solid materials and nanocomposite materials with enhanced properties
density, enhanced surface area, Coatings, anti. bacterial, target drug delivery system, grain boundaries, Porosity, atomic diffusion, mechanical properties, super. plasticity, creep, properties, Nanaocrystals, titanium nitride, silicon nitride, microcomposites, nanocomposites, Al2O3, MgO, Si3N4, SiC, nanocrystalline solids, environmental impact,nanoxide particles,corrosion resistant properties, .
Nanotechnology refers broadly to a field of applied science and technology whose unifying theme is the control of matter on the molecular level in scales smaller than 1 micrometre, normally 1 to 100 nanometers, and the fabrication of devices within that size range. It is a highly multidisciplinary field, drawing from fields such as applied physics, materials science, colloidal science, device physics, supramolecular chemistry, and even mechanical and electrical engineering. Much speculation exists as to what new science and technology may result from these lines of research. Nanotechnology can be seen as an extension of existing sciences into the nanoscale, or as a recasting of existing sciences using a newer, more modern term. up" approach, materials and devices are built from molecular components which assemble themselves chemically by principles of molecular recognition. The impetus for nanotechnology comes from a renewed interest in colloidal science, coupled with a new generation of analytical tools such as the atomic force microscope (AFM), and the scanning tunneling microscope (STM).