Invention Grant
US09570242B2 Flexible Ti—In—Zn—O transparent electrode for dye-sensitized solar cell, and metal-inserted three-layer transparent electrode with high conductivity using same and manufacturing method therefor
有权
用于染料敏化太阳能电池的柔性Ti-In-Zn-O透明电极和具有高导电性的金属插入三层透明电极及其制造方法
- Patent Title: Flexible Ti—In—Zn—O transparent electrode for dye-sensitized solar cell, and metal-inserted three-layer transparent electrode with high conductivity using same and manufacturing method therefor
- Patent Title (中): 用于染料敏化太阳能电池的柔性Ti-In-Zn-O透明电极和具有高导电性的金属插入三层透明电极及其制造方法
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Application No.: US13822700Application Date: 2012-05-02
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Publication No.: US09570242B2Publication Date: 2017-02-14
- Inventor: Gi Seok Heo , Tae Won Kim , Jae Cheol Park , Kwang Young Kim
- Applicant: Gi Seok Heo , Tae Won Kim , Jae Cheol Park , Kwang Young Kim
- Applicant Address: KR Chungcheongnam-Do
- Assignee: KOREA INSTITUTE OF INDUSTRIAL TECHNOLOGY
- Current Assignee: KOREA INSTITUTE OF INDUSTRIAL TECHNOLOGY
- Current Assignee Address: KR Chungcheongnam-Do
- Agency: The PL Law Group, PLLC
- Priority: KR10-2011-0041687 20110502
- International Application: PCT/KR2012/003425 WO 20120502
- International Announcement: WO2012/150805 WO 20121108
- Main IPC: C23C14/08
- IPC: C23C14/08 ; H01G9/20 ; H01L51/44 ; C23C14/02 ; C23C14/04 ; C23C14/20 ; C23C28/00 ; H01B1/08

Abstract:
The present invention relates to a flexible transparent electrode for a dye-sensitized solar cell and a manufacturing method for same, and more specifically, to a flexible Ti—In—Zn—O transparent electrode for a dye-sensitized solar cell and a manufacturing method for same, and to a metal-inserted three-layer transparent electrode with high conductivity using the flexible transparent electrode and a manufacturing method for same, wherein compared with the conventional fluorine-doped tin oxide (FTO) and indium-tin oxide (ITO) transparent electrodes with a high deposition temperature, the flexible transparent electrode, despite being deposited at room or low temperature, has low surface resistance, high conductivity and transmittance, superior resistance against external bending, improved surface characteristics and better surface roughness performance.
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