The current status and future prospects of kesterite solar cells: a brief review

  • Xiaolei Liu
    School of Photovoltaic and Renewable Energy Engineering University of New South Wales Sydney NSW 2052 Australia
  • Yu Feng
    School of Photovoltaic and Renewable Energy Engineering University of New South Wales Sydney NSW 2052 Australia
  • Hongtao Cui
    School of Photovoltaic and Renewable Energy Engineering University of New South Wales Sydney NSW 2052 Australia
  • Fangyang Liu
    School of Photovoltaic and Renewable Energy Engineering University of New South Wales Sydney NSW 2052 Australia
  • Xiaojing Hao
    School of Photovoltaic and Renewable Energy Engineering University of New South Wales Sydney NSW 2052 Australia
  • Gavin Conibeer
    School of Photovoltaic and Renewable Energy Engineering University of New South Wales Sydney NSW 2052 Australia
  • David B. Mitzi
    Department of Mechanical Engineering and Materials Science Duke University Durham NC 27708‐0300 USA
  • Martin Green
    School of Photovoltaic and Renewable Energy Engineering University of New South Wales Sydney NSW 2052 Australia

書誌事項

公開日
2016-01-28
権利情報
  • http://onlinelibrary.wiley.com/termsAndConditions#am
  • http://onlinelibrary.wiley.com/termsAndConditions#vor
DOI
  • 10.1002/pip.2741
公開者
Wiley

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説明

<jats:title>Abstract</jats:title><jats:p>Kesterite‐based solar cells are attracting considerable attention in recent years, owing to the reduced toxicity and greater abundance of their constituent elements. In this brief review, we discuss the current status of this important technology by focusing on three key aspects of the device: (i) the interface between the kesterite absorber and the Mo back contact, (ii) the kesterite absorber bulk defects and grain boundaries and (iii) the interface between the kesterite absorber and the buffer layer. By identifying key issues to be addressed, we provide suggestions for their potential improvement and future research. Copyright © 2016 John Wiley & Sons, Ltd.</jats:p>

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