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Interface engineering of highly efficient perovskite solar cells

Huanping Zhou; Qi Chen; Gang Li; Song Luo; Tze‐Bin Song; Hsin‐Sheng Duan; Ziruo Hong; Jingbi You · Science · 2014

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Advancing perovskite solar cell technologies toward their theoretical power conversion efficiency (PCE) requires delicate control over the carrier dynamics throughout the entire device. By controlling the formation of the perovskite layer and careful choices of other materials, we suppressed carrier recombination in the absorber, facilitated carrier injection into the carrier transport layers, and maintained good carrier extraction at the electrodes. When measured via reverse bias scan, cell PCE is typically boosted to 16.6% on average, with the highest efficiency of ~19.3% in a planar geometry without antireflective coating. The fabrication of our perovskite solar cells was conducted in air and from solution at low temperatures, which should simplify manufacturing of large-area perovskite devices that are inexpensive and perform at high levels.

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APA 7

Zhou, H, Chen, Q, Li, G, Luo, S, Song, T, Duan, H, Hong, Z, & You, J. (2014). Interface engineering of highly efficient perovskite solar cells. https://doi.org/10.1126/science.1254050

MLA

Zhou, Huanping, et al. "Interface engineering of highly efficient perovskite solar cells." 2014. https://doi.org/10.1126/science.1254050.

Chicago

Zhou, Huanping, Qi Chen, Gang Li, Song Luo, Tze‐Bin Song, Hsin‐Sheng Duan, Ziruo Hong, and Jingbi You. 2014. "Interface engineering of highly efficient perovskite solar cells.". https://doi.org/10.1126/science.1254050.

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Zhou, H. et al. 2014, Interface engineering of highly efficient perovskite solar cells, Science, available at: https://doi.org/10.1126/science.1254050 [Accessed 8 Aug. 2026].

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Title
Interface engineering of highly efficient perovskite solar cells
Author / contributors
Huanping Zhou; Qi Chen; Gang Li; Song Luo; Tze‐Bin Song; Hsin‐Sheng Duan; Ziruo Hong; Jingbi You
Publisher
Science
Publication year
2014
Language
English

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