IP Library Granted Patent US 9,267,199
Granted Patent B2
US 9,267,199 · App. 14/187,960 · Granted Feb 23, 2016

Method for manufacturing sputtering target, method for forming oxide film, and transistor

Inventors: Shunpei Yamazaki (Setagaya, JP); Masashi Tsubuku (Atsugi, JP); Masashi Oota (Atsugi, JP); Yoichi Kurosawa (Atsugi, JP); Noritaka Ishihara (Koza, JP)
Assignee: Semiconductor Energy Laboratory Co., Ltd.
C23C14/08B82Y30/00C01G15/006C23C14/086C23C14/3414C01P2002/32C01P2002/72C01P2002/85C01P2004/04C01P2004/61C01P2004/62C01P2004/64
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Quick Facts
Patent No.
US 9,267,199
App. No.
14/187,960
Granted
Feb 23, 2016
Kind
B2
Abstract

A method for manufacturing a sputtering target with which an oxide semiconductor film with a small amount of defects can be formed is provided. Alternatively, an oxide semiconductor film with a small amount of defects is formed. A method for manufacturing a sputtering target is provided, which includes the steps of: forming a polycrystalline In-M-Zn oxide (M represents a metal chosen among aluminum, titanium, gallium, yttrium, zirconium, lanthanum, cesium, neodymium, and hafnium) powder by mixing, sintering, and grinding indium oxide, an oxide of the metal, and zinc oxide; forming a mixture by mixing the polycrystalline In-M-Zn oxide powder and a zinc oxide powder; forming a compact by compacting the mixture; and sintering the compact.

Claims (17)

1. A method for manufacturing a sputtering target, comprising the steps of:

forming a polycrystalline In-M-Zn oxide powder from a homologous compound of an In-M-Zn oxide, M representing a metal selected from the group consisting of aluminum, titanium, gallium, yttrium, zirconium, lanthanum, cesium, neodymium, and hafnium;

forming a mixture by mixing the polycrystalline In-M-Zn oxide powder and a zinc oxide powder;

forming a compact by compacting the mixture; and

sintering the compact.

2. The method for manufacturing a sputtering target according to claim 1 ,

wherein an atomic ratio of zinc in the sputtering target is higher than an atomic ratio of M in the sputtering target.

3. The method for manufacturing a sputtering target according to claim 1 ,

wherein M represents gallium.

4. A method for manufacturing a sputtering target, comprising the steps of:

forming a polycrystalline In-M-Zn oxide powder, M representing a metal selected from the group consisting of aluminum, titanium, gallium, yttrium, zirconium, lanthanum, cesium, neodymium, and hafnium, by mixing, sintering, and grinding indium oxide, an oxide of the metal, and zinc oxide;

forming a mixture by mixing the polycrystalline In-M-Zn oxide powder and a zinc oxide powder;

forming a compact by compacting the mixture; and

sintering the compact.

5. The method for manufacturing a sputtering target according to claim 4 , wherein an atomic ratio of zinc in the sputtering target is higher than an atomic ratio of M in the sputtering target.

6. The method for manufacturing a sputtering target according to claim 4 , wherein the polycrystalline In-M-Zn oxide powder is a homologous compound.

7. The method for manufacturing a sputtering target according to claim 4 , wherein M represents gallium.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 24, 2014
From: YAMAZAKI, SHUNPEI; TSUBUKU, MASASHI; OOTA, MASASHI; KUROSAWA, YOICHI; ISHIHARA, NORITAKA
To: SEMICONDUCTOR ENERGY LABORATORY CO., LTD.
Reel/Frame 032284/0304 →
Priority Claims (1)
JP 2013-038402 · Feb 28, 2013 · national
Continuity (1)
Related Publication 20140241978A1 · Aug 28, 2014