EP1514958A1

Apparatus for obtaining a bulk single crystal using supercritical ammonia

Abstract

There is provided an apparatus comprising an autoclave 1 for preparing a supercritical solvent equipped with a convection control means 2 for establishing a convection flow, wherein the dissolution zone 13 where a feedstock 16 is located above the convection control means 2 and the crystallization zone where a seed 17 is located below the convection control means are formed. A convection flow rate of the supercritical solution between the dissolution zone 13 and the crystallization zone 14 is determined by the degree of opening of the convection control means 2 and the temperature difference between the dissolution zone 13 and crystallization zone 14. Accordingly, the supercritical solution, in which the nitride has a negative temperature coefficient of solubility is supplied from the dissolution zone 13 to the crystallization zone 14 in which a seed is located through the convection control means 2 so that nitride crystal is selectively grown on the seed by maintaining supersaturation of the supercritical solution with respect to the seed at the predetermined raised temperature. In the apparatus according to the present invention, the concentration of the supercritical solution is controlled below a certain level so as not to allow spontaneous crystallization, so that a nitride bulk single crystal can be obtained.

EP1514958A1, drawing sheet 1
Sheet 1 of 7

Term

Term ended

Projected expiry passed 11 December 2022, 3.8 years ago.

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7 claims: 1 independent, 6 dependent

  1. 1
    An apparatus for obtaining a bulk single crystal comprising an autoclave 1 for preparing supercritical solvent equipped with a convection control means 2 for establishing a convection flow, and mounted inside a furnace unit 4 equipped with a heating device 5 and a cooling device 6,    wherein the furnace unit 4 is controlled to obtain a predetermined temperature gradient within said autoclave by said heating device 5 and/or cooling device 6,    wherein the convection control means 2 comprises at least one horizontal baffle 12 having a central opening and/or a space between the baffle and an inner wall of the autoclave, and separating the dissolution zone 13 where a feedstock 16 is located above said baffle from said crystallization zone where a seed 17 is located below said baffle,    wherein a convection flow rate of the supercritical solution between said dissolution zone 13 and said crystallization zone 14 is determined by a degree of opening of said convection control means 2 and a temperature difference between said dissolution zone 13 and crystallization zone 14,    wherein nitride is dissolved in the supercritical solvent containing ammonia and at least alkali metal ions to make the supercritical solution, in which the nitride has a negative temperature coefficient of solubility and the supercritical solution is supplied from said dissolution zone 13 to said crystallization zone 14 in which a seed is located through said convection control means 2 so that nitride crystal is selectively grown on the seed arranged in the autoclave by maintaining supersaturation of the supercritical solution with respect to the seed at the predetermined raised temperature and controlling below a certain concentration so as not to allow spontaneous crystallization.