4.6 Article

High-temperature, spectrally-selective, scalable, and flexible thin-film Si absorber and emitter

期刊

OPTICAL MATERIALS EXPRESS
卷 10, 期 1, 页码 208-221

出版社

OPTICAL SOC AMER
DOI: 10.1364/OME.381680

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资金

  1. U.S. Department of Energy [DE-EE0004946]
  2. National Science Foundation [EEC1454315-CAREER]
  3. Office of Naval Research [N000014-15-1-2833]
  4. Army Research Office (FY2019 MURI program)
  5. Northrop Grumman

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Solar thermal technologies have great potential to provide low-cost storage for solar energy. However, their efficiencies are limited by a lack of scalable, mechanically flexible, durable, yet highly-efficient spectrally-selective solar absorbers suitable for high temperatures at low solar concentrations. Here, we overcome these challenges by fabricating a scalable free-standing spectrally-selective thin-film Si absorber and emitter (SSTFS) composite. Its high-temperature emittance shows strong spectral selectivity, even at 595 degrees C. Thermal stability is proven by measuring optical properties before and after thermal cycling equivalent to one day of concentrated sunlight. Despite the use of crystalline Si, the fabricated SSTFS composite exhibits exceptional mechanical flexibility to cover most surface geometries. The SSTFS composite demonstrates the potential of high-temperature, efficient and flexible solar absorbers and thermal emitters to advance renewable solar energy with storage. (C) 2019 Optical Society of America under the terms of the OSA Open Access Publishing Agreement.

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