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  2. Spin coating - Wikipedia

    en.wikipedia.org/wiki/Spin_coating

    The substrate is then rotated at speeds up to 10,000 rpm to spread the coating material by centrifugal force. A machine used for spin coating is called a spin coater, or simply spinner. [1] Rotation is continued while the fluid spins off the edges of the substrate, until the desired thickness of the film is achieved.

  3. Nanosphere lithography - Wikipedia

    en.wikipedia.org/wiki/Nanosphere_lithography

    Dip coating is an effective method for applications where a precise control over the particle distribution isn't required. [ 3 ] Spin Coating and solvent evaporation methods are capable of producing large areas of particles, but with limited control over the layer homogeneity or thickness.

  4. Chemistry of photolithography - Wikipedia

    en.wikipedia.org/wiki/Chemistry_of_photolithography

    There are four basic parameters that are involved in spin coating: solution viscosity, solid content (density), angular speed, and spin time. [13] A range of thicknesses can be achieved by spin coating. Most commonly the thicknesses range from 1-200 μm. The main properties that affect the thickness of the film are viscosity and spin speed.

  5. Thin film - Wikipedia

    en.wikipedia.org/wiki/Thin_film

    This allows creating thin films of various molecules such as nanoparticles, polymers and lipids with controlled particle packing density and layer thickness. [6] Spin coating or spin casting, uses a liquid precursor, or sol-gel precursor deposited onto a smooth, flat substrate which is subsequently spun at a high velocity to centrifugally ...

  6. Slot-die coating - Wikipedia

    en.wikipedia.org/wiki/Slot-die_coating

    Slot-die coating is a non-contact coating method, in which the slot-die is typically held over the substrate at a height several times higher than the target wet film thickness. [23] The coating fluid transfers from the slot-die to the substrate via a fluid bridge that spans the air gap between the slot-die lips and substrate surface.

  7. Layer by layer - Wikipedia

    en.wikipedia.org/wiki/Layer_by_layer

    The bilayers and wash steps can be performed in many different ways including dip coating, spin-coating, spray-coating, flow based techniques and electro-magnetic techniques. [1] The preparation method distinctly impacts the properties of the resultant films, allowing various applications to be realized. [ 1 ]

  8. Electrospinning - Wikipedia

    en.wikipedia.org/wiki/Electrospinning

    This would introduce multi-functionality (flame, chemical, environmental protection) by blending fibers into electrospinlaced (using electrospinning to combine different fibers and coatings to form three-dimensional shapes, such as clothing) [62] layers in combination with polymer coatings.

  9. Sol–gel process - Wikipedia

    en.wikipedia.org/wiki/Sol–gel_process

    The precursor sol can be either deposited on a substrate to form a film (e.g., by dip-coating or spin coating), cast into a suitable container with the desired shape (e.g., to obtain monolithic ceramics, glasses, fibers, membranes, aerogels), or used to synthesize powders (e.g., microspheres, nanospheres). [1]

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