Nanotechnology
field of applied science whose theme is the control of matter on atomic and (supra)molecular scale | |||||
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- This page is started with the material for the wikibook ' Opensource Handbook of Nanoscience and Nanotechnology'
Part 1: Introduction[редактиране]
Nanotechnology is the modern technology of micro subsctances.The branch of technology that deals with dimensions and tolerances of less than 100 nanometres, especially the manipulation of individual atoms and molecules .The pdf below will you give brief explanation about Nanotechnology.
PDF files[редактиране]
Part 2: Seeing 'Nano'[редактиране]
These are the instruments that nanotechnologists use to 'see' very small objects that present themselves on the nanoscale (a billionth of a meter).
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Image:TheElectromagneticSpectrum.jpg
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Image:MicroscopesOverview.jpg - Overview of microscope types
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Nano in the larger picture
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nano
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electronics
Optical Microscopy[редактиране]
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Image:OpticalMicroscope.jpg
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1869
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salt and sugar
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pixels
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micro plastic
Electron Microscopy[редактиране]
General
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wood
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pollen
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Image:Ant_to_atoms_banner.jpg - the banner used for the main page so far
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Image:AntsAndAtomsWithScaleBars.jpg - microscope resolutions
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Image:Two_microgrippers.jpg - Two microfabricated electrostatically actuated grippers moving towards each other inside an electron microscope
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Image:SimpleSEMandTEM.jpg
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Image:Electron Scattering in solid samples.jpg
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Image:Electron microscopy and effect of the e-beam energy.jpg
SEM[редактиране]
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walnut leaf
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pollen
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blood cells
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tooth
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coronavirus
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oxides
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Lecithin
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electrospun scaffold
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skin graft
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Chinese medicine
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Nanoparticles in Brain Metastases
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Keratella cochlearis
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Bosch product
ESEM[редактиране]
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Image:ESEMsystem.jpg
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Image:ESEMimages.jpg
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gold particles
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gold particles
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wool
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mineral
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hair
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fibres
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polystyrene
TEM[редактиране]
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Image:TEM_philips_EM_430.jpg
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Image:TEMvsHAADFSTEM.jpg
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veterinary virus
Scanning probe microsocpy[редактиране]
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Image:SPM_overview.jpg
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coating
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Crystal surface
Atomic Force Microscopy (AFM)[редактиране]
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Image:AFMsetup.jpg
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Image:Typical_AFM_cantilever.jpg - A typical AFM cantilever
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Image:AFM_cantilever_geometry.jpg
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Image:AFM_LFM_signal_scan.jpg
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Image:AFM_cantilever,_sample%2C_forces_and_angles.jpg
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Image:AFM_cantilever,_detectors_and_angles.jpg
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Image:Beam and Hinged Beam Bending.jpg
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Image:AFM contact ICM and NCM.jpg
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Image:AFM tapping and non-contact frequencies.jpg
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Image:OverviewOfAFMmethods.jpg
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Crystallized cellulose
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platelet
These figures for some odd reason wont show in the gallery display mode...
Scanning Tunneling Microscopy[редактиране]
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Image:STM_basic_diagram.jpg - simple overview of STM
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Image:UHVSTMinside.JPG
Part 3: Physics on the Nanoscale[редактиране]
How do things move, and what are the important forces on the nanoscale? It is very important to know these forces, and to take them seriously. This is because as you get smaller and smaller, the forces you think are weak - or don't even notice - take much greater effect.
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Image:Surface_tension_and_angles.jpg
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Image:SurfaceForces.jpg
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Image:Scaling in length area and volume.jpg
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Catalysts
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plasma layer machine
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electro spinning machine
Part 4: Nanomaterials[редактиране]
The typical nanostructures and their functionality.
Overviews[редактиране]
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Electronic_structure_of_materials.jpg
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Nanostructure_geometries.jpg
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Image:Bandgap vs Lattice Const for Semiconductors - Wide range.jpg
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Image:DCplasmaSputtering.jpg
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surface
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nanofibres
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sponge
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plant sponge
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cracked Surface layer
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TiO residue
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gold-silicon
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fracture
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fractured
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layer
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comparing samples
Nanotubes and wires[редактиране]
The basis for a huge amount of nanotechnology, these nanowire and tubes come in several types such as Singlewall carbon nanotubes (can be metallic or semiconducting), multiwall nanotubes as well as various bamboo-structures or nanofibers/whiskers/coils.
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Image:MOVPEofEPINW.jpg
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Epitaxial Nanowire Heterostructures SEM image.jpg
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nanotubes
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nanotubes
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porous gold nanowire
Buckminsterfullerenes (Buckyballs)[редактиране]
Buckminsterfullerenes, affectionately known as 'buckyballs'.
Quantumdots and Nanoparticles[редактиране]
These are nanoscale particles of various materials.
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deposited on a surface
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quantum dots under UV
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Quantum dots
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silver particle memory
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coacervate drops
Colloids[редактиране]
Nanoparticles in dispersion. A nanoparticle dispersion is also called a sol.
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particles in an abalone shriveling syndrome-associated virus suspension
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magnetite solution
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silica suspension
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silver particles
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Lithium titanate colloid, non-Newtonian fluid
Fluorescing Quantum Dots[редактиране]
These begin to have many uses in biological tag systems (among others). This is because quantum dots can have very stable fluoresence unlike fluorescing molecules that are prone to bleaching and influenced by the environment. The fluorescent color can be tune by the particle size.
Part 5: Nanosystems[редактиране]
Fundamental electronic, optical, mechanical, and fluidic systems that can be made with nanostructures.
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Image:Molecular gears.jpg - Molecular gears
Part 6: Nanoengineering[редактиране]
How to make nanostructures integrated into useful devices.
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Slip-stick_piezo_actuator
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Microgripper holding silicon nanowires
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transistor
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quantum chipset
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meta-material
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microballoons
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smart textile
Electron beam deposition[редактиране]
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Image:EBIDsketch.jpg - EBID process
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Image:EEBDsetup.jpg - the setup for environmental electron beam deposition
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Image:EEBD core-shell structure.jpg
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spiral deposition
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layer coating
Part 7: Nano Bio-Primer[редактиране]
An important part of nanotechnology is to interface with living organisms.
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Image:MolecularImagingTherapy.jpg
Part 8 Safety[редактиране]
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Asbestos
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Asbestos
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pdf