Actions for MgZnO High Voltage Thin Film Transistors on Glass for Inverters in Building Integrated Photovoltaics [electronic resource].
MgZnO High Voltage Thin Film Transistors on Glass for Inverters in Building Integrated Photovoltaics [electronic resource].
- Published
- Washington, D.C. : United States. Dept. of Energy. Office of Basic Energy Sciences, 2016.
Oak Ridge, Tenn. : Distributed by the Office of Scientific and Technical Information, U.S. Dept. of Energy - Physical Description
- Article numbers 34,169 : digital, PDF file
- Additional Creators
- Brookhaven National Laboratory, United States. Department of Energy. Office of Basic Energy Sciences, and United States. Department of Energy. Office of Scientific and Technical Information
Access Online
- Restrictions on Access
- Free-to-read Unrestricted online access
- Summary
- Building integrated photovoltaics (BIPV) have attracted considerable interests because of its aesthetically attractive appearance and overall low cost. In BIPV, system integration on a glass substrate like windows is essential to cover a large area of a building with low cost. But, the conventional high voltage devices in inverters have to be built on the specially selected single crystal substrates, limiting its application for large area electronic systems, such as the BIPV. We demonstrate a Magnesium Zinc Oxide (MZO) based high voltage thin film transistor (HVTFT) built on a transparent glass substrate. We designed devices with unique ring-type structures and use modulated Mg doping in the channel - gate dielectric interface, resulting in a blocking voltage of over 600 V. In addition to BIPV, the MZO HVTFT based inverter technology also creates new opportunities for emerging self-powered smart glass.
- Report Numbers
- E 1.99:bnl--113698-2017-ja
bnl--113698-2017-ja - Subject(s)
- Other Subject(s)
- Note
- Published through SciTech Connect.
10/10/2016.
"bnl--113698-2017-ja"
"KC0403020"
Scientific Reports 6 1 ISSN 2045-2322 AM
Wen-Chiang Hong; Chieh-Jen Ku; Rui Li; Siamak Abbaslou; Pavel Reyes; Szu-Ying Wang; Guangyuan Li; Ming Lu; Kuang Sheng; Yicheng Lu. - Funding Information
- SC00112704
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