摘要:
A patterned, multi-layered thin film structure is patterned using ultra-fast lasers and absorption spectroscopy without damaging underlying layers of the layered structure. The structure is made by selecting ablatable layers based on their thermal, strength and absorption spectra and by using an ultra-fast laser programmed with the appropriate wavelength (λ), pulse width (τ), spectral width (Δλ), spot size, bite size and fluence. The end structure may have features (such as vias, insulating areas, or inkjet printed areas) patterned in the last (top) layer applied or at deeper layers within the layered structure, and can be used as components of organic light emitting didoes (OLEDs) and organic thin film transistors (OTFTs). The method of the present invention includes determining the product's specifications, providing a substrate, selecting a layer, applying the layer, patterning the layer and determining if more layers need to be added to the multi-layered thin film structure.
摘要:
A patterned, multi-layered thin film structure is patterned using ultra-fast lasers and absorption spectroscopy without damaging underlying layers of the layered structure. The structure is made by selecting ablatable layers based on their thermal, strength and absorption spectra and by using an ultra-fast laser programmed with the appropriate wavelength (λ), pulse width (τ), spectral width (Δλ), spot size, bite size and fluence. The end structure may have features (such as vias, insulating areas, or inkjet printed areas) patterned in the last (top) layer applied or at deeper layers within the layered structure, and can be used as components of organic light emitting didoes (OLEDs) and organic thin film transistors (OTFTs). The method of the present invention includes determining the product's specifications, providing a substrate, selecting a layer, applying the layer, patterning the layer and determining if more layers need to be added to the multi-layered thin film structure.
摘要:
A thermal transfer recording apparatus that can arbitrarily perform any one of outputting operations of a sublimable dyestuff image, a thermoplastic ink image, and a mixed picture image which combines a sublimable dyestuff image with a thermoplastic ink image, on a plain recording paper is disclosed. The apparatus employs a dyeable layer which is carried on a substrate sheet usually shared by a plurality of sublimable dyestuff-carrying layers. The dyeable layer is first transferred to a first intermediate transfer medium having a certain mold releasing or parting property. Sublimable dyestuffs are then selectively transferred into the dyeable layer to form a sublimable dyestuff image thereon, which thereafter is transferred to the paper. For obtaining the mixed picture image, the thermoplastic ink image on the second intermediate transfer medium is transferred to the dyeable layer on the first intermediate transfer medium on which the sublimable dyestuff image has already been formed, and thereafter the dyeable layer is transferred to the paper.