EP1576210A1

A substrate for epitaxy and a method of preparing the same

Abstract

The substrate is used for opto-electric or electrical devices and comprises a layer of nitride grown by means of vapor phase epitaxy growth wherein both main surfaces of the nitride substrate are substantially consisting of non N-polar face and N-polar face respectively and the dislocation density of the substrate is 5×105/cm2 or less. Therefore, the template type substrate has a good dislocation density and a good value of FWHM of the X-ray rocking curve from (0002) plane less than 80, so that the resulting template type substrate is very useful for the epitaxy substrate from gaseous phase such as MOCVD, MBE and HVPE, resulting in possibility of making good opto-electric devices such as Laser Diode and large-output LED and good electric devices such as MOSFET.

Term

Term ended

Projected expiry passed 11 December 2023, 2.8 years ago.

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20 claims: 8 independent, 12 dependent

  1. 1
    Claims of equivalent WO 2004053210 A1 CLAIMS 1. A substrate used for opto-electric or electrical devices which comprises a layer of nitride grown by means of vapor phase epitaxy growth wherein both main surfaces of i the nitride substrate are substantially consisting of non N-polar face and N-polar face respectively and the dislocation density of the substrate is 5X10 5 /cm 2 or less.
  2. 8
    A substrate used for opto-electric or electrical devices accroding to claim 1, wherein the substrate is a gallium-containing nitride containing silicon (Si) or oxygen (0) as donor dopants.
  3. 9
    A substrate used for opto-electric or electrical devices accroding to claim 1, wherein the substrate is a gallium-containing nitride containing magnesium (Mg) or zinc (Zn) as acceptor dopants.
  4. 10
    A substrate for opto-electric or electrical devices accroding to claim 8 or 9, wherein the concentration of dopants ranges between 10 16 /cm 3 and 10 21 /cm 3 .
  5. 11
    A process of preparing a substrate for opto-electric or electrical devices which comprises steps of:(a) preparing a layer A) of bulk mono-crystal nitride containing at least one element of alkali metals (Group I, IUPAC 1989) to have a thichness for substrate by crystallization of gallium or aluminum-containing nitride on a seed from a super-critical ammonia-containing solution;(b) forming a layer B) or C) of nitride by means of vapor phase epitaxy growth on Al or Ga-polar face of the layer A) ;and (c) slicing the layer B) or C) off from the substrate A) to get a substrate having a thickness of 100 μm or more and a main surface substantially consisting of Al or Ga- polar face.
  6. 12
    A process of preparing a substrate for opto-electric or electrical devices, wherein the step (b) comprises (bl) forming a layer Bl) or Cl) of nitride by means of vapor phase epitaxy growth on Al or Ga-polar face of the layer A) and (b2) forming a layer B2) or C2) of nitride by means of vapor phase epitaxy growth on the layer Bl) or Cl) ;and (c) slicing the layer B2) or C2) off from the substrate A) to get a substrate having a thickness of 100 μm or more and a main surface substantially consisting of Al or Ga- polar face.
  7. 13
    A process of preparing a substrate for opto-electric or electrical devices, which further comprises (d) forming , a layer D) of nitride by means of vapor phase epitaxy growth on Al or Ga-polar face of the layer B) , C) , B2) or C2) .
  8. 14
    A process of preparing a substrate for opto-electric or electrical devices, which further comprises (d) forming a layer D) of nitride by means of vapor phase epitaxy growth on Al or Ga-polar face of the layer B) , C) , B2) or C2);and (e) slicing the layer D) off from the substrate B) , C) , B2) or C2) to get a substrate having a thickness of 100 μm or more and a main surface substantially consisting of Al or Ga-polar face.
  9. 15
    A process of preparing a substrate for opto-electric or electrical devices, according to any one of claims 11 to 14, wherein the layer B) , Bl) , C) or Cl) is prepared by MOCVD and has a thickness of 0.1 to 3 μm.
  10. 17
    A process of preparing a substrate for opto-electric or electrical devices according to any one of claims 11 to 16, which comprises further step of annealing the substrate B) , B2), C) or C2).in the atmosphere that does not contain hydrogen but does contain at temperature between approx. 600 and 1050°C, thus producing material with better crystalline quality than before the annealing.
  11. 20
    A process of preparing a substrate for opto-electric or electrical devices according to any one of claims 11 to 19, which comprises further step of removing impurities from bulk mono-crystalline nitride by a process of rinsing in the environment of supercritical ammonia-containing solvent, water or carbon dioxide or being subjected to the action of gaseous hydrogen, nitrogen or ammonia. 21. A process of preparing a substrate for opto-electric or electrical devices according to claim 20, wherein the step of rinsing is carried out with aid of the application of ultrasounds or the exposure to an electron beam.