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  4. Solution Transformation of Cu2O into CuInS2 for Solar Water Splitting
 
research article

Solution Transformation of Cu2O into CuInS2 for Solar Water Splitting

Luo, Jingshan  
•
Tilley, S. David  
•
Steier, Ludmilla  
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2015
Nano Letters

Though Cu2O has demonstrated high performance as a photocathode for solar water splitting, its band gap is too large for efficient use as the bottom cell in tandem configurations. Accordingly, copper chalcopyrites have recently attracted much attention for solar water splitting due to their smaller and tunable band gaps. However, their fabrication is mainly based on vacuum evaporation, which is an expensive and energy consuming process. Here, we have developed a novel and low-cost solution fabrication method, and CuInS2 was chosen as a model material due to its smaller band gap compared to Cu2O and relatively simple composition. The nanostructured CuInS2 electrodes were synthesized at low temperature in crystalline form by solvothermal treatment of electrochemically deposited Cu2O films. Following the coating of overlayers and decoration with Pt catalyst, the as-fabricated CuInS2 electrode demonstrated water splitting photocurrents of 3.5 mA cm(2) under simulated solar illumination. To the best of our knowledge, this is the highest performance yet reported for a solution-processed copper chalcopyrite electrode for solar water splitting. Furthermore, the electrode showed good stability and had a broad incident photon-to-current efficiency (IPCE) response to wavelengths beyond 800 nm, consistent with the smaller bandgap of this material.

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Type
research article
DOI
10.1021/nl504746b
Web of Science ID

WOS:000349578000091

Author(s)
Luo, Jingshan  
Tilley, S. David  
Steier, Ludmilla  
Schreier, Marcel  
Mayer, Matthew T.  
Fan, Hong Jin
Graetzel, Michael  
Date Issued

2015

Publisher

American Chemical Society

Published in
Nano Letters
Volume

15

Issue

2

Start page

1395

End page

1402

Subjects

Solution transformation

•

Cu2O

•

CuInS2

•

solar water splitting

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LPI  
Available on Infoscience
May 29, 2015
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/114653
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