Matches in SemOpenAlex for { <https://semopenalex.org/work/W3082401119> ?p ?o ?g. }
- W3082401119 endingPage "2330" @default.
- W3082401119 startingPage "2330" @default.
- W3082401119 abstract "Designing an efficient emitter design is an important step for achieving a highly efficient TPV conversion process. Wavelength-selective emissivity, spectra match between the emitter and TPV cells, and high thermal stability are three main characteristics that must be considered before implementing the emitter. In this work, an indium tin oxide (ITO)/sapphire emitter structure is investigated for TPV application over the temperature range from 200°C to 1000°C. A 1-µm-thick ITO layer is deposited on a 650-µm-thick sapphire substrate. In addition, 50-nm-thick SiO 2 is deposited on top of the ITO to enhance the performance of emitter at high temperatures. High-temperature emissivity and absorptivity measurement of the emitter samples are obtained using FTIR and a Hitachi U-4100 spectrophotometer, respectively. The resultant SiO 2 /ITO/sapphire/stainless-steel planar emitter structure has selective emission with high emissivity of ∼0.8 in the 1–1.6 µm wavelength regime at 1000°C. This emission range lies at the bandgap edge of silicon TPV cells and thus can be used to harness the true potential for making a low-cost thermophotovoltaic system." @default.
- W3082401119 created "2020-09-08" @default.
- W3082401119 creator A5000507299 @default.
- W3082401119 creator A5006832079 @default.
- W3082401119 creator A5014017276 @default.
- W3082401119 creator A5021205475 @default.
- W3082401119 creator A5024992159 @default.
- W3082401119 creator A5036113522 @default.
- W3082401119 creator A5039104983 @default.
- W3082401119 creator A5040469421 @default.
- W3082401119 creator A5040582519 @default.
- W3082401119 creator A5076182136 @default.
- W3082401119 creator A5081838658 @default.
- W3082401119 date "2020-09-01" @default.
- W3082401119 modified "2023-10-18" @default.
- W3082401119 title "Transparent planar indium tin oxide for a thermo-photovoltaic selective emitter" @default.
- W3082401119 cites W1490871615 @default.
- W3082401119 cites W1518901172 @default.
- W3082401119 cites W1892180125 @default.
- W3082401119 cites W1967384706 @default.
- W3082401119 cites W1979536610 @default.
- W3082401119 cites W1987495125 @default.
- W3082401119 cites W1991007197 @default.
- W3082401119 cites W1997384615 @default.
- W3082401119 cites W1999052600 @default.
- W3082401119 cites W2001054007 @default.
- W3082401119 cites W2001746871 @default.
- W3082401119 cites W2004212781 @default.
- W3082401119 cites W2006532266 @default.
- W3082401119 cites W2010960607 @default.
- W3082401119 cites W2013649661 @default.
- W3082401119 cites W2017246061 @default.
- W3082401119 cites W2029637177 @default.
- W3082401119 cites W2030040009 @default.
- W3082401119 cites W2030484959 @default.
- W3082401119 cites W2036745998 @default.
- W3082401119 cites W2039335245 @default.
- W3082401119 cites W2039936092 @default.
- W3082401119 cites W2040413221 @default.
- W3082401119 cites W2050314800 @default.
- W3082401119 cites W2056274426 @default.
- W3082401119 cites W2058208824 @default.
- W3082401119 cites W2064135477 @default.
- W3082401119 cites W2064999919 @default.
- W3082401119 cites W2069093828 @default.
- W3082401119 cites W2070752936 @default.
- W3082401119 cites W2071169369 @default.
- W3082401119 cites W2078985719 @default.
- W3082401119 cites W2083792526 @default.
- W3082401119 cites W2090390681 @default.
- W3082401119 cites W2091670594 @default.
- W3082401119 cites W2119386397 @default.
- W3082401119 cites W2130609300 @default.
- W3082401119 cites W2147737028 @default.
- W3082401119 cites W2156872213 @default.
- W3082401119 cites W2207048251 @default.
- W3082401119 cites W2296539373 @default.
- W3082401119 cites W2395805208 @default.
- W3082401119 cites W2408676755 @default.
- W3082401119 cites W2482134523 @default.
- W3082401119 cites W2491939068 @default.
- W3082401119 cites W2544370766 @default.
- W3082401119 cites W2743850321 @default.
- W3082401119 cites W2754392822 @default.
- W3082401119 cites W2764296162 @default.
- W3082401119 cites W2766157161 @default.
- W3082401119 cites W2775080244 @default.
- W3082401119 cites W2791785911 @default.
- W3082401119 cites W2863405163 @default.
- W3082401119 cites W2886713719 @default.
- W3082401119 cites W2944027931 @default.
- W3082401119 cites W2944610066 @default.
- W3082401119 cites W3003767272 @default.
- W3082401119 cites W3102282272 @default.
- W3082401119 doi "https://doi.org/10.1364/ome.397246" @default.
- W3082401119 hasPublicationYear "2020" @default.
- W3082401119 type Work @default.
- W3082401119 sameAs 3082401119 @default.
- W3082401119 citedByCount "1" @default.
- W3082401119 countsByYear W30824011192021 @default.
- W3082401119 crossrefType "journal-article" @default.
- W3082401119 hasAuthorship W3082401119A5000507299 @default.
- W3082401119 hasAuthorship W3082401119A5006832079 @default.
- W3082401119 hasAuthorship W3082401119A5014017276 @default.
- W3082401119 hasAuthorship W3082401119A5021205475 @default.
- W3082401119 hasAuthorship W3082401119A5024992159 @default.
- W3082401119 hasAuthorship W3082401119A5036113522 @default.
- W3082401119 hasAuthorship W3082401119A5039104983 @default.
- W3082401119 hasAuthorship W3082401119A5040469421 @default.
- W3082401119 hasAuthorship W3082401119A5040582519 @default.
- W3082401119 hasAuthorship W3082401119A5076182136 @default.
- W3082401119 hasAuthorship W3082401119A5081838658 @default.
- W3082401119 hasBestOaLocation W30824011191 @default.
- W3082401119 hasConcept C111368507 @default.
- W3082401119 hasConcept C117537405 @default.
- W3082401119 hasConcept C120665830 @default.
- W3082401119 hasConcept C121332964 @default.
- W3082401119 hasConcept C127313418 @default.