Secondary phase formation in Zn-rich Cu2ZnSnSe4-based solar cells annealed in low pressure and temperature conditions

Author:

Fairbrother Andrew1,Fontané Xavier1,Izquierdo-Roca Victor1,Placidi Marcel1,Sylla Dioulde1,Espindola-Rodriguez Moises1,López-Mariño Simón1,Pulgarín Fabian A.2,Vigil-Galán Osvaldo3,Pérez-Rodríguez Alejandro14,Saucedo Edgardo1

Affiliation:

1. Solar Energy Materials and Systems Laboratory, IREC; Catalonia Institute for Energy Research; Barcelona Spain

2. Centro de Investigación en Energía; Universidad Nacional Autónoma de México; Temixco Mexico

3. Escuela Superior de Física y Matemáticas-Instituto Politécnico Nacional (IPN); México DF Mexico

4. IN UB, Department d'Electrònica; Universitat de Barcelona; Barcelona Spain

Publisher

Wiley

Subject

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

Reference25 articles.

1. Enhanced conversion efficiencies of Cu2ZnSnS4-based thin film solar cells by using preferential etching technique;Katagiri;Applied Physics Express,2008

2. Kato T Hiroi H Sakai N Muraoka S Sugimoto H Characterization of front and back interfaces on Cu 2 ZnSnS 4 thin-film solar cells 27 th European Photovoltaic Solar Energy Conference and Exhibition Proceedings 2012 2236 2239 10.4229/27thEUPVSEC2012-3CO.4.2

3. High-efficiency solar cell with earth-abundant liquid-processed absorber;Todorov;Advanced Energy Materials,2010

4. Co-evaporated Cu2SnSnSe4 films and devices;Repins;Solar Energy Materials and Solar Cells,2012

5. Control of an interfacial MoSe2 layer in Cu2ZnSnSe4 thin film solar cells: 8.9% power conversion efficiency with a TiN diffusion barrier;Shin;Applied Physics Letters,2012

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