4.8 Article

Designed growth and patterning of perovskite nanowires for lasing and wide color gamut phosphors with long-term stability

期刊

NANO ENERGY
卷 73, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.nanoen.2020.104801

关键词

Perovskite; Nanowire; Patterning; Printing; Stability

资金

  1. King Abdullah University of Science and Technology (KAUST) Office of Sponsored Research (OSR) [OSR-2016-CRG5-3005]
  2. KAUST baseline funding
  3. Ministry of Science and Technology, Taiwan [MOST-106-2112-M-001-036-MY3]
  4. Academia Sinica [AS-CDA-108-M08]
  5. Australian Research Council [DP190103316]
  6. City University of Hong Kong

向作者/读者索取更多资源

Hybrid halide perovskites are proposed for next-generation photovoltaics and lighting technologies due to their remarkable optoelectronic properties. In this study, we demonstrate printed perovskite nanowires (NWs) for lasing and wide-gamut phosphor using a combination of inkjet printing and nanoporous anodic aluminum oxide (AAO). The random lasing behaviors of the resulting perovskite NWs are analyzed and discussed. Moreover, by varying the composition of Cl-, Br-, and I- anions, we demonstrate tunable emission wavelengths of the perovskite NWs from 439 to 760 nm, with a large red-green-blue color space that extends to 117% of the color standard defined by the National Television Systems Committee (NTSC). Furthermore, we demonstrate passivation of the perovskite NWs against moisture due to their compact spatial confinement within the AAO template combined with a poly(methyl methacrylate) sealing process, resulting in highly stable emission intensity that degrades only 19% after continuous 250 h of 30 mW/cm(2) UV excitation and degrades 30% after three months when stored in air at 50% humidity. This inkjet printing fabrication strategy involving AAO-confined perovskite NWs enables highly stable, large-area direct patterning and mass production of perovskite NWs, which is promising for modern lighting applications.

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