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Parameters that control and influence the organo-metal halide perovskite crystallization and morphology 被引量:1

Parameters that control and influence the organo-metal halide perovskite crystallization and morphology
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摘要 This review discusses various parameters that influence and control the organo-metal halide perovskite crystallization process. The effect of the perovskite morphology on the photovoltaic performance is a critical factor. Moreover, it has a dramatic effect on the stability of the perovskite, which has significant importance for later use of the organo-metal perovskite in assorted applications. In this review, we brought together several research investigations that describe the main parameters that significantly influence perovskite crystallization, for example, the annealing process, the precursor solvent, anti-solvent treatment, and additives to the iteite solutions. This review discusses various parameters that influence and control the organo-metal halide perovskite crystallization process. The effect of the perovskite morphology on the photovoltaic performance is a critical factor. Moreover, it has a dramatic effect on the stability of the perovskite, which has significant importance for later use of the organo-metal perovskite in assorted applications. In this review, we brought together several research investigations that describe the main parameters that significantly influence perovskite crystallization, for example, the annealing process, the precursor solvent, anti-solvent treatment, and additives to the iteite solutions.
机构地区 Institute of Chemistry
出处 《Frontiers of Optoelectronics》 CSCD 2016年第1期44-52,共9页 光电子前沿(英文版)
关键词 hybrid perovskite MORPHOLOGY CRYSTALLIZATION perovskite surface hybrid perovskite, morphology, crystallization, perovskite surface
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  • 1Kojima A, Teshima K, Shirai Y, Miyasaka T. J Am Chem Soc, 2009, 131:6050.
  • 2Lee M M, Teuscher J, Miyasaka T, Murakami T N, Snaith H J. Sci- ence, 2012, 338:643.
  • 3Noh J H, Im S H, Heo J H, Mandal T N, Seok S I. Nano Lett, 2013, 13: 1764.
  • 4Jeon N J, Noh J H, Yang W S, Kim Y C, Ryu S, Seo J, Seok S I. Nature, 2015, 517:476.
  • 5Zuo F, Williams S T, hiang P-W, Chueh C-C, Liao C-Y, lea A K-Y. Adv Mater, 2014, 26:6454.
  • 6Heo J H, lm S H, Noh J H, Mandal T N, Lim C S, Chang J A, Lee Y H, Kim H J, Sarkar A, Nazeeruddin M K, Gratzel M, Seok S L Nat Pho- tonics, 2013, 7:487.
  • 7Cai B, Xing Y D, Yang Z, Zhang W H, Qiu J S. Energy Environ Sci, 2013, 6:1480.
  • 8leon N J, Lee J, Noh J H, Nazeeruddin M K, Gratzel M, Seok S l.JAm Chem Soc, 2013, 135:19087.
  • 9Ryu S C, Nob J H, leon N J, Kim Y C, Yang S, Seo J W, Seok S I. Energy Environ Sci, 2014, 7:2614.
  • 10Cai B, Zhong D, Yang Z, Huang B K, Miao S, Zhang W H, Qiu J S, Li C. J Mater Chem C, 2015, 3:729.

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