Observation and Implications of Composition Inhomogeneity Along Grain Boundaries in Thin Film Polycrystalline CdTe Photovoltaic Devices

Author:

Misra Sudhajit1ORCID,Aguiar Jeffery A.2,Sun Yubo3,v. Devener Brian4,Palekis Vasilios5,Ferekides Christos S.5,Yoon Heayoung P.1,Bermel Peter3,Scarpulla Michael A.1

Affiliation:

1. Electrical and Computer Engineering University of Utah 50 S. Central Campus Dr., MEB Rm 2110 Salt Lake City UT 84112 USA

2. Idaho National Laboratory Nuclear Materials Department 2525 Fremont Avenue Idaho Falls ID 83415 USA

3. Electrical and Computer Engineering Purdue University Birck Nanotechnology Center Room 2270, 1205 West State Street West Lafayette IN 47906 USA

4. Department of Chemistry University of Utah 36 S. Wasatch Drive, SMBB Room 2515 Salt Lake City UT 84112 USA

5. Electrical Engineering University of South Florida Mail Point: ENB118, 4202 East Fowler Ave Tampa FL 33620 USA

Funder

National Science Foundation

University of Utah

U.S. Department of Energy

Division of Electrical, Communications and Cyber Systems

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials

Reference35 articles.

1. The roles of carrier concentration and interface, bulk, and grain-boundary recombination for 25% efficient CdTe solar cells

2. Carrier density and lifetime for different dopants in single-crystal and polycrystalline CdTe

3. Monocrystalline CdTe solar cells with open-circuit voltage over 1 V and efficiency of 17%

4. S.Krum First Solar Achieves World Record 18.6% Thin Film Module Conversion Efficiency /news‐releases/news‐release‐details/first‐solar‐achieves‐world‐record‐186‐thin‐film‐module (accessed: July2017).

5. Solar cell efficiency tables (version 49)

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