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Effects of a Molecular Monolayer Modification of NiO Nanocrystal Layer Surfaces on Perovskite Crystallization and Interface Contact toward Faster Hole Extraction and Higher Photovoltaic Performance

  • Yang Bai
  • , Haining Chen
  • , Shuang Xiao
  • , Qifan Xue
  • , Teng Zhang
  • , Zonglong Zhu
  • , Qiang Li
  • , Chen Hu
  • , Yun Yang
  • , Zhicheng Hu
  • , Fei Huang
  • , Kam Sing Wong
  • , Hin Lap Yip*
  • , Shihe Yang
  • *此作品的通讯作者

科研成果: 期刊稿件文章同行评审

摘要

NiO is a promising hole transporting material for perovskite solar cells due to its high hole mobility, good stability, easy processibility, and suitable Fermi level for hole extraction. However, the efficiency of NiO-based cells is still limited by the slow hole extraction due to the poor perovskite/NiO interface and the inadequate quality of the two solution-processed material phases. Here, large influences of a monolayer surface modification of NiO nanocrystal layers with ethanolamine molecules are demonstrated on the enhancement of hole extraction/transport and thus the photovoltaic performance. The underlying causes have been revealed by a series of studies, pointing to a favorable dipole layer formed by the molecular adsorption along with the enhanced perovskite crystallization and the improved interface contact. Comparatively, the solar cells based on a diethanolamine-modified NiO layer have achieved a rather high fill factor, indeed one of the highest among NiO-based perovskite solar cells, and high short-circuit photocurrent density (Jsc), resulting in a power conversion efficiency of ≈16%, most importantly, without hysteresis.

源语言英语
页(从-至)2950-2958
页数9
期刊Advanced Functional Materials
26
17
DOI
出版状态已出版 - 3 5月 2016
已对外发布

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  1. 可持续发展目标 7 - 经济适用的清洁能源
    可持续发展目标 7 经济适用的清洁能源

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