ZnMgO by APCVD enabling high-performance mid-bandgap CIGS on polyimide modules

October 2009 - October 2010

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ZnMgO by APCVD enabling high-performance mid- ...
Lawrence M. Woods
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Last edited by MARC Bot
December 13, 2022 | History

ZnMgO by APCVD enabling high-performance mid-bandgap CIGS on polyimide modules

October 2009 - October 2010

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This Pre-Incubator project was designed to increase the "real world" CIGS based photovoltaic module performance and decrease the Levelized Cost of Energy (LCOE) of systems utilizing those modules compared to our traditional CIGS based photovoltaic modules. This was enabled by a) increasing the CIGS bandgap and b) developing better matched device finishing layers to the mid-bandgap CIGS based photovoltaics; including window and buffer layers (and eventually the transparent conducting oxide (TCO)). Incremental progress in the novel device performance was demonstrated throughout the program, and ultimately achieved performance results that exceeded the milestones ahead of schedule. Metal-oxide buffer layer devices with mid-bandgap CIGS alloys on polyimide substrates were produced with efficiencies of over 12%. Corresponding mid-bandgap devices with CdS buffers produced over 13% efficient devices. Furthermore, no obvious degradation in the device performance has been observed to date, after proper storage ambient of the different types of unencapsulated devices were identified.

Publish Date
Language
English
Pages
19

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Edition Availability
Cover of: ZnMgO by APCVD enabling high-performance mid-bandgap CIGS on polyimide modules
ZnMgO by APCVD enabling high-performance mid-bandgap CIGS on polyimide modules: October 2009 - October 2010
2011, National Renewable Energy Laboratory
electronic resource : in English

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Book Details


Edition Notes

Title from PDF title screen (NREL, viewed May 9, 2011).

"April 2011."

Includes bibliographical references.

Prepared under Subcontract No. NEU-0-99010-02 DE-AC36-08GO28308 PV10.1199

Full text available via Internet in .pdf format. Adobe Acrobat Reader required.

Published in
Golden, CO
Series
NREL/SR -- 5200-51379, NREL/SR -- 5200-51379.
Other Titles
Zinc magnesium oxide atmospheric pressure chemical vapor deposition enabling high performance mid bandgap copper indium gallium diselenide on polyimide modules

The Physical Object

Format
[electronic resource] :
Pagination
1 online resource (19 p.)
Number of pages
19

ID Numbers

Open Library
OL43926198M
OCLC/WorldCat
721329841

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