Reflective liquid crystal display, top-emitting OLED display and fabrication method thereof
A top-emitting OLED display and fabrication method thereof are provided. The top-emitting OLED display includes providing a handling substrate. A composite layer is formed on the handling substrate. An organic light emitting unit is formed on the composite layer. A top electrode is formed on the organic light emitting unit. A reflective type display and fabrication method thereof are provided. The reflective type display includes providing a handling substrate. A composite layer is formed on the handling substrate, a thin film transistor array is formed on the composite layer.
1. A top-emitting organic light emitting display, comprising:
a composite layer comprising:
a first layer;
a second layer disposed on the first layer; and
a metal layer disposed between the first layer and the second layer;
an organic light emitting unit formed on the composite layer; and
a top electrode formed on the organic light emitting unit.
2. The top-emitting organic light emitting display as claimed in claim 1 , further comprising a transparent plastic substrate disposed on the top electrode.
3. The top-emitting organic light emitting display as claimed in claim 1 , wherein the first layer and the second layer are formed by a coating process.
4. The top-emitting organic light emitting display as claimed in claim 3 , wherein the first layer or the second layer comprise polycarbonate (PC), polyethersulfone (PES), polyarylate (PAR), polyimide (PI), polyethylene terephathalate (PET) or polyetherimide (PEI).
5. The top-emitting organic light emitting display as claimed in claim 1 , wherein the thickness of the metal layer is from 0.1 times to 0.5 times the thickness of the first layer or the second layer.
6. The top-emitting organic light emitting display as claimed in claim 1 , wherein the metal layer comprises gold (Au), aluminum (Al), silver (Ag) or copper (Cu).
7. The top-emitting organic light emitting display as claimed in claim 6 , wherein the metal layer is formed by a hot embossing or electroless deposition process.