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Title: Enhanced Thermal Stability of W-Ni-Al2O3 Cermet-Based Spectrally Selective Solar Absorbers with Tungsten Infrared Reflectors

Journal Article · · Advanced Energy Materials

Research Organization:
Energy Frontier Research Centers (EFRC) (United States). Solid-State Solar-Thermal Energy Conversion Center (S3TEC)
Sponsoring Organization:
USDOE Office of Science (SC), Basic Energy Sciences (BES)
DOE Contract Number:
SC0001299; FG02-09ER46577
OSTI ID:
1168083
Journal Information:
Advanced Energy Materials, Related Information: S3TEC partners with Massachusetts Institute of Technology (lead); Boston College; Oak Ridge National Laboratory; Rensselaer Polytechnic Institute
Country of Publication:
United States
Language:
English

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Near-Perfect Ultrathin Nanocomposite Absorber with Self-Formed Topping Plasmonic Nanoparticles journal July 2017
Hybrid Solar Absorber–Emitter by Coherence‐Enhanced Absorption for Improved Solar Thermophotovoltaic Conversion journal October 2018
Tungsten-Carbon Nanotube Composite Photonic Crystals as Thermally Stable Spectral-Selective Absorbers and Emitters for Thermophotovoltaics journal August 2018
Efficient, Scalable, and High-Temperature Selective Solar Absorbers Based on Hybrid-Strategy Plasmonic Metamaterials journal May 2018
Microstructure and Optical Properties of SS/Mo/Al2O3 Spectrally Selective Solar Absorber Coating journal November 2016
Concentrating solar thermoelectric generators with a peak efficiency of 7.4% journal September 2016
A high-performance spectrally-selective solar absorber based on a yttria-stabilized zirconia cermet with high-temperature stability journal January 2015
Self-doped W–WO x nanocermet multilayer films fabricated by single tungsten target reactive sputtering for selective solar absorption journal January 2018
Nickel nanoparticles individually encapsulated in densified ceramic shells for thermally stable solar energy absorption journal January 2019
W/Cu thin film infrared reflector for TiN x O y based selective solar absorber with high thermal stability journal May 2017
High-temperature stable refractory nanoneedles with over 99% solar absorptance journal March 2019