EP1575085A2

Thin film device supply body and method of fabricating tha same and its use in a transfer method

Abstract

The present invention aims to provide a technique in which a layer to be transferred is easily peeled and transferred to a transferred body that has pliability or flexibility. Also, the present invention aims to provide a method of fabricating a semiconductor device using these peeling and transfer techniques, and electronic equipment fabricated with the semiconductor device. In order to solve the above-mentioned problems, a transfer method in which a layer to be transferred formed on a substrate is transferred to a transfer body that has pliability or flexibility includes the first step of forming a layer to be transferred on a substrate; the second step of bonding the layer to be transferred formed on the substrate to a transfer body having pliability or flexibility fixed on a fixture; and the third step of peeling the layer to be transferred from the substrate and transferring the layer to be transferred to the transfer body.

EP1575085A2, drawing sheet 1
Sheet 1 of 18

Term

Term ended

Projected expiry passed 8 March 2025, 1.5 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

25 claims: 14 independent, 11 dependent

  1. 1
    A thin film device supply body comprising:a thin film device;a temporary fixing adhesive layer;and a supporting substrate, wherein the thin film device is fixed on the supporting substrate with the temporary fixing adhesive layer.
  2. 4
    The thin film device supply body according to any of claims 1 through 3, wherein adhesive strength of the temporary fixing adhesive layer is significantly diminished or lost by irradiation light or heating.
  3. 5
    The thin film device supply body according to any of claims 2 through 4, wherein an interfacial separation and/or an intra-layer separation occur in the peeling layer by irradiating light.
  4. 6
    The thin film device supply body according to any of claims 1 through 5, wherein the supporting substrate has light transparency.
  5. 7
    The thin film device supply body according to any of claims 1 through 6, wherein the thin film device is divided into a plurality of regions.
  6. 9
    A method of fabricating a thin film device supply body in which the thin film device is fixed on a supporting substrate so that the thin film device is to be peeled and transferred, the method comprising:fixing a temporary fixing substrate on a thin film element layer fabricated on a surface of an original fabrication substrate with a first temporary fixing adhesive layer;removing the original fabrication substrate from the thin film element layer;bonding a flexible substrate on a face of the thin film element layer with a permanent adhesive layer, the face being one from which the original fabrication substrate has been removed;fixing a supporting substrate on a face of the flexible substrate with a second temporary fixing adhesive, the face being opposite to the face on which the thin film element layer has been bonded;and removing the temporary fixing substrate from the thin film element layer.
  7. 15
    The method of fabricating a thin film device supply body according to any of claims 9 through 14 further comprising dividing the thin film element layer into a plurality of regions after fixing the thin film element layer to any of the supporting substrate, the temporary fixing substrate and the original fabrication substrate.
  8. 18
    Electronic equipment comprising a thin film device supplied from the thin film device supply body according to any of claims 1 through 8.
  9. 19
    A transfer method in which a layer to be transferred formed on a substrate is transferred to a transfer body having pliability or flexibility, the method comprising:forming the layer to be transferred on the substrate;bonding the layer to be transferred formed on the substrate to the transfer body having pliability or flexibility fixed on a fixture;and peeling the layer to be transferred from the substrate and transferring the layer to be transferred to the transfer body.
  10. 20
    A transfer method in which a layer to be transferred formed on a substrate is transferred to a transfer body having pliability or flexibility, the method comprising:forming the layer to be transferred on the substrate;bonding the layer to be transferred to a first transfer body;peeling the layer to be transferred from the substrate and transferring the layer to be transferred to the first transfer body. bonding the layer to be transferred that has been transferred on the first transfer body to a second transfer body having pliability or flexibility fixed on a fixture;and peeling the layer to be transferred from the first transfer body and transferring the layer to be transferred to the second transfer body.
  11. 21
    A transfer method in which a layer to be transferred formed on a substrate is transferred to a transfer body having pliability or flexibility, the method comprising:forming the layer to be transferred on the substrate;bonding the substrate, with the layer to be transferred, to a first transfer body having pliability or flexibility fixed on a fixture ;and peeling the layer to be transferred from the substrate and transferring the layer to be transferred to the first transfer body;bonding the layer to be transferred that has been transferred on the first transfer body to a second transfer body having pliability or flexibility fixed on a fixture;and peeling the layer to be transferred from the first transfer body and transferring the layer to be transferred to the second transfer body.
  12. 22
    The transfer method according to any of claims 19 through 21, wherein the fixture is an auxiliary substrate.
  13. 23
    The transfer method according to any of claims 19 through 21, wherein the layer to be transferred is a thin film device.
  14. 24
    A method of fabricating a semiconductor device using the transfer method according to any of claims 19 through 21.