Pipeline for nitrogen crystal pulling and nitrogen-doping single crystal pulling process

A technology of nitrogen tube and nitrogen, which is applied in the direction of single crystal growth, single crystal growth, crystal growth, etc., can solve the problems that the furnace gas cannot be switched, the chemical properties are inactive, and only argon can be used, so as to reduce the crystal pull. cost, ease of installation, and quality assurance

Pending Publication Date: 2019-04-30
INNER MONGOLIA ZHONGHUAN SOLAR MATERIAL
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Problems solved by technology

[0003] Argon is a monoatomic molecule, a typical inert gas, and does not react with silicon during the single crystal pulling process; nitrogen is a diatomic molecule, not an inert gas, chemically inactive, and can react with certain substances at high temperatures Chemical reaction; nitrogen will not react with liquid silicon when it is above 1300°C, but it will react with solid silicon to form infusible silicon nitride, which floats on the surface of molten silicon and affects crystal formation
[0004] The existing nitrogen-doped Czochralski single crystal furnace realizes the whole process of single crystal growth equal diameter + finishing + shutdown and uses nitrogen. The added nitrogen pipeline can only supply gas to th

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  • Pipeline for nitrogen crystal pulling and nitrogen-doping single crystal pulling process

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Embodiment Construction

[0029] The present embodiment will be further described below in conjunction with the accompanying drawings and specific embodiments.

[0030] figure 1 The structure of an embodiment of the present invention is shown, and the specific pipeline connection relationship of this embodiment is shown. This embodiment relates to a pipeline for nitrogen gas pulling crystals and the use of the pipeline for nitrogen gas pulling crystals for nitrogen doping single The crystal pulling process is suitable for use in the Czochralski single crystal process. When the Czochralski single crystal is pulled, the nitrogen gas distribution plate and the argon gas distribution plate are connected in pipelines, and are respectively connected to the main chamber and the auxiliary chamber of the single crystal furnace. Nitrogen and argon are input to the single crystal furnace, and the feeding time and flow rate of nitrogen and argon are controlled to realize the pull-down in the atmosphere of nitrogen...

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Abstract

The invention provides a pipeline for nitrogen crystal pulling, wherein the pipeline includes an argon control pipeline and a nitrogen control pipeline. The argon control pipeline is respectively connected with a subchamber and a main chamber of a single crystal furnace. The nitrogen control pipeline is connected with the subchamber and the main chamber of the single crystal furnace. The argon control pipeline is provided with an argon intake pipeline, and the nitrogen control pipeline is provided with a nitrogen intake pipeline. The pipeline has the beneficial effects that the pipeline for nitrogen crystal pulling has simpler structure and is easy to install. Meanwhile, the pipeline structure with the structure can separate argon from nitrogen, and can control the input of nitrogen and argon respectively. The pipeline also has a flowmeter, so the input flow quantity of nitrogen and argon can be controlled from time to time, then the volume proportion of argon and nitrogen in the single crystal furnace is controlled, the furnace pressure of the single crystal furnace is ensured, and the quality of pulled single crystals is ensured.

Description

technical field [0001] The invention belongs to the technical field of Czochralski single crystal, and in particular relates to a pipeline for pulling crystal with nitrogen gas and a process for pulling a nitrogen-doped single crystal. Background technique [0002] Existing Czochralski single crystal furnaces use high-purity argon as a protective gas to pull single crystals. The industrial method for preparing high-purity argon is generally the cryogenic air separation method. The proportion of argon in the air is less than 0.93%; the gas source is scarce , high production cost. The methods for industrially preparing high-purity nitrogen include cryogenic air separation nitrogen production, pressure swing adsorption nitrogen production, and membrane separation nitrogen production. Production costs are low. If it is possible to use nitrogen instead of argon as a protective gas to pull single crystals, it will not only break the limitation of a single gas source, but also re...

Claims

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Application Information

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IPC IPC(8): C30B27/02C30B31/16C30B29/06
CPCC30B27/02C30B29/06C30B31/16
Inventor 张全顺高润飞武志军裘孝顺张文霞高树良徐强谷守伟
Owner INNER MONGOLIA ZHONGHUAN SOLAR MATERIAL
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