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19.2% Efficient InP Heterojunction Solar Cell with Electron-Selective TiO2 Contact

  • Xingtian Yin
  • , Corsin Battaglia
  • , Yongjing Lin
  • , Kevin Chen
  • , Mark Hettick
  • , Maxwell Zheng
  • , Cheng Ying Chen
  • , Daisuke Kiriya
  • , Ali Javey
  • University of California at Berkeley
  • LBL

Research output: Contribution to journalArticlepeer-review

145 Scopus citations

Abstract

We demonstrate an InP heterojunction solar cell employing an ultrathin layer (∼10 nm) of amorphous TiO2 deposited at 120 °C by atomic layer deposition as the transparent electron-selective contact. The TiO2 film selectively extracts minority electrons from the conduction band of p-type InP while blocking the majority holes due to the large valence band offset, enabling a high maximum open-circuit voltage of 785 mV. A hydrogen plasma treatment of the InP surface drastically improves the long-wavelength response of the device, resulting in a high short-circuit current density of 30.5 mA/cm2 and a high power conversion efficiency of 19.2%. (Figure Presented).

Original languageEnglish
Pages (from-to)1245-1250
Number of pages6
JournalACS Photonics
Volume1
Issue number12
DOIs
StatePublished - 17 Dec 2014

Keywords

  • InP photovoltaics, titanium dioxide, heterojunctions, selective contact

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