IP Library Granted Patent US 11,316,016
Granted Patent B2
US 11,316,016 · App. 16/926,861 · Granted Apr 26, 2022

Composite oxide semiconductor and transistor

Inventors: Shunpei Yamazaki (Setagaya, JP); Yasuharu Hosaka (Tochigi, JP); Yukinori Shima (Tatebayashi, JP); Junichi Koezuka (Tochigi, JP); Kenichi Okazaki (Tochigi, JP)
Assignee: Semiconductor Energy Laboratory Co., Ltd.
H01L29/24H01L29/0692H01L29/1037H01L29/42384H01L29/4908H01L29/7869H01L29/78648H01L29/78696
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,316,016
App. No.
16/926,861
Granted
Apr 26, 2022
Kind
B2
Abstract

A novel material is provided. A composite oxide semiconductor includes a first region and a second region. The first region contains indium. The second region contains an element M (the element M is one or more of Ga, Al, Hf, Y, and Sn). The first region and the second region are arranged in a mosaic pattern. The composite oxide semiconductor further includes a third region. The element M is gallium. The first region contains indium oxide or indium zinc oxide. The second region contains gallium oxide or gallium zinc oxide. The third region contains zinc oxide.

Claims (50)

1. A transistor comprising:

an oxide semiconductor layer;

a gate insulating layer over the oxide semiconductor layer;

a gate electrode over the gate insulating layer; and

a source electrode and a drain electrode over the gate insulating layer,

wherein the oxide semiconductor layer comprises In, Ga, and Zn,

wherein in the oxide semiconductor layer an atomic ratio of In is larger than an atomic ratio of Ga and an atomic ratio of Zn is larger than the atomic ratio of Ga,

wherein the oxide semiconductor layer comprises a first region comprising In, Ga and Zn, a second region comprising In, Ga and Zn, and a third region comprising In, Ga and Zn,

wherein the first region has a higher In concentration than the second region,

wherein the second region has a higher Ga concentration than each of the first region and the third region,

wherein the third region has a higher In concentration than the second region, and

wherein in a cross-sectional view the second region is positioned between the first region and the third region.

2. The transistor according to claim 1 , wherein the atomic ratio of In:Ga:Zn in the oxide semiconductor layer is 4:2:3 or a neighborhood thereof.

3. A transistor comprising:

an oxide semiconductor layer;

a gate insulating layer over the oxide semiconductor layer;

a gate electrode over the gate insulating layer; and

a source electrode and a drain electrode over the gate insulating layer,

wherein the oxide semiconductor layer comprises In, Ga, and Zn,

wherein in the oxide semiconductor layer an atomic ratio of In is larger than an atomic ratio of Ga and an atomic ratio of Zn is larger than the atomic ratio of Ga,

wherein the oxide semiconductor layer comprises a first region comprising In, Ga and Zn and a second region comprising In, Ga and Zn,

wherein the first region has a higher In concentration than the second region,

wherein the second region has a higher Ga concentration than the first region, and

wherein a size of each of the first region and the second region observed by mapping analysis in energy dispersive X-ray spectroscopy is 3 nm or less.

4. The transistor according to claim 3 , wherein the atomic ratio of In:Ga:Zn in the oxide semiconductor layer is 4:2:3 or a neighborhood thereof.

5. A transistor comprising:

an oxide semiconductor layer;

a gate insulating layer;

a gate electrode overlapping with the oxide semiconductor layer with the gate insulating layer inbetween; and

a source electrode and a drain,

wherein the oxide semiconductor layer comprises In, Ga, and Zn,

wherein in the oxide semiconductor layer an atomic ratio of In is larger than an atomic ratio of Ga and an atomic ratio of Zn is larger than the atomic ratio of Ga,

wherein the oxide semiconductor layer comprises a first region comprising In, Ga and Zn, a second region comprising In, Ga and Zn, and a third region comprising In, Ga and Zn,

wherein the first region has a higher In concentration than the second region,

wherein the second region has a higher Ga concentration than each of the first region and the third region,

wherein the third region has a higher In concentration than the second region, and

wherein in a cross-sectional view the second region is positioned between the first region and the third region.

6. The transistor according to claim 5 , wherein the atomic ratio of In:Ga:Zn in the oxide semiconductor layer is 4:2:3 or a neighborhood thereof.

7. A transistor comprising:

an oxide semiconductor layer;

a gate insulating layer;

a gate electrode overlapping with the oxide semiconductor layer with the gate insulating layer inbetween; and

a source electrode and a drain,

wherein the oxide semiconductor layer comprises In, Ga, and Zn,

wherein in the oxide semiconductor layer an atomic ratio of In is larger than an atomic ratio of Ga and an atomic ratio of Zn is larger than the atomic ratio of Ga,

wherein the oxide semiconductor layer comprises a first region comprising In, Ga and Zn and a second region comprising In, Ga and Zn,

wherein the first region has a higher In concentration than the second region,

wherein the second region has a higher Ga concentration than the first region, and

wherein a size of each of the first region and the second region observed by mapping analysis in energy dispersive X-ray spectroscopy is 3 nm or less.

8. The transistor according to claim 7 , wherein the atomic ratio of In:Ga:Zn in the oxide semiconductor layer is 4:2:3 or a neighborhood thereof.

Priority Claims (1)
JP 2016-100939 · May 19, 2016 · national
Continuity (2)
Continuation 15592712 · May 11, 2017
Related Publication 20200343347A1 · Oct 29, 2020
Cited By (1)
US 12,520,537