Thermophotovoltaic energy conversion (English Wikipedia)

Analysis of information sources in references of the Wikipedia article "Thermophotovoltaic energy conversion" in English language version.

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  • Bauer, Thomas (2011). Thermophotovoltaics. Green Energy and Technology. doi:10.1007/978-3-642-19965-3. ISBN 978-3-642-19964-6.[page needed]
  • Zhang, Chao; Liao, Zhenghai; Tang, Liangliang; Liu, Zhuming; Huo, Rongling; Wang, Zhiping; Qiu, Kuanrong (13 May 2019). "A comparatively experimental study on the temperature-dependent performance of thermophotovoltaic cells". Applied Physics Letters. 114 (19). Bibcode:2019ApPhL.114s3902Z. doi:10.1063/1.5088791.
  • Strandberg, Rune (7 February 2015). "Theoretical efficiency limits for thermoradiative energy conversion". Journal of Applied Physics. 117 (5). Bibcode:2015JAP...117e5105S. doi:10.1063/1.4907392. hdl:11250/279289.
  • Liao, Tianjun; et al. (2019). "Thermoradiative–Photovoltaic Cells". IEEE Transactions on Electron Devices. 66 (3): 1386–1389. Bibcode:2019ITED...66.1386L. doi:10.1109/TED.2019.2893281.
  • Anderson, David; Wong, Wayne; Tuttle, Karen (2005). "An Overview and Status of NASA's Radioisotope Power Conversion Technology NRA". 3rd International Energy Conversion Engineering Conference. Reston, Virginia: American Institute of Aeronautics and Astronautics. doi:10.2514/6.2005-5713. hdl:2060/20050244468. ISBN 978-1-62410-062-8.
  • Nelson, Robert E (May 2003). "A brief history of thermophotovoltaic development". Semiconductor Science and Technology. 18 (5): S141 – S143. Bibcode:2003SeScT..18S.141N. doi:10.1088/0268-1242/18/5/301.
  • Swanson, R.M. (1980). "Recent developments in thermophotovoltaic conversion". 1980 International Electron Devices Meeting. pp. 186–189. doi:10.1109/IEDM.1980.189789.
  • Service, Robert F. (13 April 2022). "'Thermal batteries' could efficiently store wind and solar power in a renewable grid". Science. doi:10.1126/science.abq5215.
  • Christ, Steve; Seal, Michael (1997). "Viking 29 - A Thermophotovoltaic Hybrid Vehicle Designed and Built at Western Washington University". SAE Technical Paper Series. Vol. 1. doi:10.4271/972650.
  • LaPotin, Alina; Schulte, Kevin L.; Steiner, Myles A.; Buznitsky, Kyle; Kelsall, Colin C.; Friedman, Daniel J.; Tervo, Eric J.; France, Ryan M.; Young, Michelle R.; Rohskopf, Andrew; Verma, Shomik; Wang, Evelyn N.; Henry, Asegun (14 April 2022). "Thermophotovoltaic efficiency of 40%". Nature. 604 (7905): 287–291. arXiv:2108.09613. Bibcode:2022Natur.604..287L. doi:10.1038/s41586-022-04473-y. PMC 9007744. PMID 35418635.
  • Roy-Layinde, Bosun; Lim, Jihun; Arneson, Claire; Forrest, Stephen R.; Lenert, Andrej (July 2024). "High-efficiency air-bridge thermophotovoltaic cells". Joule. 8 (7): 2135–2145. Bibcode:2024Joule...8.2135R. doi:10.1016/j.joule.2024.05.002.
  • Narayan, Tarun C.; Nizamian, Dustin P.; Luciano, Cecilia; Johnson, Benjamin A.; Limpinsel, Moritz; Young, Alexandra R.; Briggs, Justin A.; Kuritzky, Leah Y.; Ponec, Andrew J.; Perl, Emmett E.; Kayes, Brendan M.; Tervo, Eric J.; Arulanandam, Madhan K.; France, Ryan M.; King, Richard R.; Steiner, Myles A.; Bierman, David M. (2021). "Platform for Accurate Efficiency Quantification of > 35% Efficient Thermophotovoltaic Cells". 2021 IEEE 48th Photovoltaic Specialists Conference (PVSC). pp. 1352–1354. doi:10.1109/PVSC43889.2021.9518588. ISBN 978-1-6654-1922-2.
  • Bitnar, Bernd (May 2003). "Silicon, germanium and silicon/germanium photocells for thermophotovoltaics applications". Semiconductor Science and Technology. 18 (5): S221 – S227. Bibcode:2003SeScT..18S.221B. doi:10.1088/0268-1242/18/5/312.
  • Oh, Minsu; McElearney, John; Lemire, Amanda; Vandervelde, Thomas E. (7 November 2022). "Material candidates for thermally robust applications of selective thermophotovoltaic emitters". Physical Review Materials. 6 (11): 110201. Bibcode:2022PhRvM...6k0201O. doi:10.1103/PhysRevMaterials.6.110201.
  • Lin, S. Y.; Moreno, J.; Fleming, J. G. (14 July 2003). "Three-dimensional photonic-crystal emitter for thermal photovoltaic power generation". Applied Physics Letters. 83 (2): 380–382. Bibcode:2003ApPhL..83..380L. doi:10.1063/1.1592614.
  • Fraas, L.M.; Avery, J.E.; Sundaram, V.S.; Dinh, V.T.; Davenport, T.M.; Yerkes, J.W.; Gee, J.M.; Emery, K.A. (1990). "Over 35% efficient GaAs/GaSb stacked concentrator cell assemblies for terrestrial applications". IEEE Conference on Photovoltaic Specialists. pp. 190–195. doi:10.1109/PVSC.1990.111616.
  • Algora, Carlos (2003). "Modelling and Manufacturing GaSb TPV Converters". AIP Conference Proceedings. Vol. 653. pp. 452–461. doi:10.1063/1.1539400.
  • Charache, G. W.; Egley, J. L.; Depoy, D. M.; Danielson, L. R.; Freeman, M. J.; Dziendziel, R. J.; Moynihan, J. F.; Baldasaro, P. F.; Campbell, B. C.; Wang, C. A.; Choi, H. K.; Turner, G. W.; Wojtczuk, S. J.; Colter, P.; Sharps, P.; Timmons, M.; Fahey, R. E.; Zhang, K. (September 1998). "Infrared materials for thermophotovoltaic applications". Journal of Electronic Materials. 27 (9): 1038–1042. Bibcode:1998JEMat..27.1038C. doi:10.1007/s11664-998-0160-x. OSTI 655354.
  • Wang, C. A. (2004). "Antimony-Based III–V Thermophotovoltaic Materials and Devices". AIP Conference Proceedings. Vol. 738. pp. 255–266. doi:10.1063/1.1841902.
  • Karlina, L. B.; Kulagina, M. M.; Timoshina, N. Kh.; Vlasov, A. S.; Andreev, V. M. (2007). "In0.53Ga0.47As/InP conventional and inverted thermophotovoltaic cells with back surface reflector". AIP Conference Proceedings. Vol. 890. pp. 182–189. doi:10.1063/1.2711735.
  • Khodr, Majed; Chakraburtty, Manisha; McCann, Patrick J. (March 2019). "PbSnSe/PbSrSe quantum well materials for thermophotovoltaic devices". AIP Advances. 9 (3): 035303. Bibcode:2019AIPA....9c5303K. doi:10.1063/1.5080444.
  • Guazzoni, Guido (2004). "A Retrospective of Four Decades of Military Interest in Thermophotovoltaics". AIP Conference Proceedings. Vol. 738. pp. 3–12. doi:10.1063/1.1841874.
  • LaPotin, Alina; Schulte, Kevin L.; Steiner, Myles A.; Buznitsky, Kyle; Kelsall, Colin C.; Friedman, Daniel J.; Tervo, Eric J.; France, Ryan M.; Young, Michelle R.; Rohskopf, Andrew; Verma, Shomik; Wang, Evelyn N.; Henry, Asegun (14 April 2022). "Thermophotovoltaic efficiency of 40%". Nature. 604 (7905): 287–291. arXiv:2108.09613. Bibcode:2022Natur.604..287L. doi:10.1038/s41586-022-04473-y. PMC 9007744. PMID 35418635.
  • Teofilo, V. L.; Choong, P.; Chang, J.; Tseng, Y. L. & Ermer, S. (2008). "Thermophotovoltaic Energy Conversion for Space". Journal of Physical Chemistry C. 112 (21): 7841–7845. doi:10.1021/jp711315c.
  • Wilt, David; Chubb, Donald; Wolford, David; Magari, Patrick; Crowley, Chris (2007). "Thermophotovoltaics for Space Power Applications". AIP Conference Proceedings. Vol. 890. pp. 335–345. doi:10.1063/1.2711751.
  • Palfinger, G nther; Bitnar, Bernd; Durisch, Wilhelm; Mayor, Jean-Claude; Gr tzmacher, Detlev; Gobrecht, Jens (May 2003). "Cost estimate of electricity produced by TPV". Semiconductor Science and Technology. 18 (5): S254 – S261. Bibcode:2003SeScT..18S.254P. doi:10.1088/0268-1242/18/5/317.
  • Coutts, Timothy J. (1997). "Thermophotovoltaic principles, potential, and problems". AIP Conference Proceedings. pp. 217–234. doi:10.1063/1.53449.

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  • Charache, G. W.; Egley, J. L.; Depoy, D. M.; Danielson, L. R.; Freeman, M. J.; Dziendziel, R. J.; Moynihan, J. F.; Baldasaro, P. F.; Campbell, B. C.; Wang, C. A.; Choi, H. K.; Turner, G. W.; Wojtczuk, S. J.; Colter, P.; Sharps, P.; Timmons, M.; Fahey, R. E.; Zhang, K. (September 1998). "Infrared materials for thermophotovoltaic applications". Journal of Electronic Materials. 27 (9): 1038–1042. Bibcode:1998JEMat..27.1038C. doi:10.1007/s11664-998-0160-x. OSTI 655354.

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  • Малышев, В.И. (1979). Введение в экспериментальную спектроскопию [Introduction to Experimental Spectroscopy] (in Russian). Moscow: Nauka. OCLC 6627050.[page needed]

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