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Development of Alkali Metal Thermal-to-Electric Converter Unit Cells Using Mo/TiN Electrode
Seung-won Seog, Hyun-Jong Choi, Sun-Dong Kim, Wook-Hyun Lee, Sang-Kuk Woo, Moon-Hee Han
J. Korean Ceram. Soc.. 2017;54(3):200-204.   Published online 2017 May 31    DOI: https://doi.org/10.4191/kcers.2017.54.3.01

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Development of Alkali Metal Thermal-to-Electric Converter Unit Cells Using Mo/TiN Electrode
Journal of the Korean Ceramic Society. 2017;54(3):200-204   Crossref logo
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Novel Mo/TiN composites for an alkali metal thermal-to-electric converter (AMTEC) electrode
Ceramics International. 2014;40(9):14247-14252   Crossref logo
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Experimental evaluation of electrode conversion efficiency of alkali metal thermal to electric converter
Heat Transfer?Asian Research. 2001;30(3):234-244   Crossref logo
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Concept design of solar thermal receiver using alkali metal thermal to electric converter (AMTEC)
Current Applied Physics. 2010;10(2):S254-S256   Crossref logo
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SECONDARY BATTERIES – HIGH TEMPERATURE SYSTEMS | Alkali Metal Thermal to Electric Energy Converter
Encyclopedia of Electrochemical Power Sources. 2009;334-346   Crossref logo
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Alkali metal thermal-to-electric converter development
Renewable Energy. 2001;23(3-4):451-461   Crossref logo
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Evaluation of CaO–Al2O3 adhesive bonding properties for β″-Al2O3 solid electrolyte sealing for alkali metal thermal electric converter
Ceramics International. 2013;39(8):9223-9227   Crossref logo
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Electrical breakdown experiments with application to alkali metal thermal-to-electric converters
Fuel and Energy Abstracts. 2003;44(4):225   Crossref logo
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Electrode characteristics of alkali metal thermoelectric converter
Electrical Engineering in Japan. 1991;111(1):87-94   Crossref logo
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Reversible H2 storage using alkali metal intercalated graphite composite
Fuel Cells Bulletin. 2002;2002(2):13   Crossref logo
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