Criteria for improving the properties of ZnGeAs2 solar cells

Author:

Peshek Timothy J.123,Zhang Lei1,Singh Rakesh K.1,Tang ZhiZhong1,Vahidi Mahmoud1,To Bobby2,Coutts Timothy J.2,Gessert Timothy A.2,Newman Nathan1,van Schilfgaarde Mark1

Affiliation:

1. The School for Engineering of Matter, Transport and Energy; Arizona State University; Tempe AZ 85287 USA

2. National Renewable Energy Laboratory; Golden CO 80401 USA

3. e QED, LLC; Mayfield Village OH 44143 USA

Funder

DOE-EERE

Publisher

Wiley

Subject

Electrical and Electronic Engineering,Condensed Matter Physics,Renewable Energy, Sustainability and the Environment,Electronic, Optical and Magnetic Materials

Reference21 articles.

1. Thin film tandem photovoltaic cell from II-IV-V chalcopyrites.;Schilfgaarde;Applied Physics Letters,2010

2. “Energy critical elements: securing materials for emerging technologies” http://www.aps.org/policy/reports/popa-reports/loader.cfm?csModule=security/getfile&PageID=236337

3. Materials availability expands the opportunity for large-scale photovoltaics deployment;Wadia;Environmental Science and Technology,2009

4. Structural and electronic properties of ZnGeAs2;Janotti;Physical Review B,2001

5. Norman AG Olson JM Romero MJ al-Jassim MM Electron microscopy studies of potential 1-eV bandgap semiconductor compounds ZnGeAs 2 and Zn 3 As 2 grown by MOVPE Presented at the NCPV Program Review 2001 http://www.nrel.gov/docs/fy02osti/31037.pdf

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