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Obtaining Large Columnar CdTe Grains and Long Lifetime on Nanocrystalline CdSe, MgZnO, or CdS Layers.

Authors :
Amarasinghe, Mahisha
Colegrove, Eric
Moseley, John
Moutinho, Helio
Albin, David
Duenow, Joel
Jensen, Soren
Kephart, Jason
Sampath, Walajabad
Sivananthan, Siva
Al‐jassim, Mowafak
Metzger, Wyatt K.
Source :
Advanced Energy Materials; 4/6/2018, Vol. 8 Issue 11, p1-1, 9p
Publication Year :
2018

Abstract

Abstract: CdTe solar cells have reached efficiencies comparable to multicrystalline silicon and produce electricity at costs competitive with traditional energy sources. Recent efficiency gains have come partly from shifting from the traditional CdS window layer to new materials such as CdSe and MgZnO, yet substantial headroom still exists to improve performance. Thin film technologies including Cu(In,Ga)Se<subscript>2</subscript>, perovskites, Cu<subscript>2</subscript>ZnSn(S,Se)<subscript>4</subscript>, and CdTe inherently have many grain boundaries that can form recombination centers and impede carrier transport; however, grain boundary engineering has been difficult and not practical. In this work, it is demonstrated that wide columnar grains reaching through the entire CdTe layer can be achieved by aggressive postdeposition CdTe recrystallization. This reduces the grain structure constraints imposed by nucleation on nanocrystalline window layers and enables diverse window layers to be selected for other properties critical for electro‐optical applications. Computational simulations indicate that increasing grain size from 1 to 7 µm can be equivalent to decreasing grain‐boundary recombination velocity by three orders of magnitude. Here, large high‐quality grains enable CdTe lifetimes exceeding 50 ns. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
16146832
Volume :
8
Issue :
11
Database :
Complementary Index
Journal :
Advanced Energy Materials
Publication Type :
Academic Journal
Accession number :
129134134
Full Text :
https://doi.org/10.1002/aenm.201702666