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・ Gadodiamide
・ Gadofosveset
・ Gadol
・ Gadoleic acid
・ Gadolin
・ Gadolinite
・ Gadolinium
・ Gadolinium acetylacetonate
・ Gadolinium gallium garnet
・ Gadolinium oxyorthosilicate
・ Gadolinium oxysulfide
・ Gadolinium yttrium garnet
・ Gadolinium(III) chloride
・ Gadolinium(III) nitrate
・ Gadolinium(III) oxide
Gadolinium-doped ceria
・ Gadolosaurus
・ Gadom
・ Gadomiec-Chrzczany
・ Gadomiec-Jędryki
・ Gadomiec-Miłocięta
・ Gadomiec-Peronie
・ Gadomiec-Wyraki
・ Gadomski
・ Gadomski (crater)
・ Gadomskie
・ Gadomus
・ Gadomus colletti
・ Gadonanotube
・ Gadong


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Gadolinium-doped ceria : ウィキペディア英語版
Gadolinium-doped ceria
Gadolinium doped ceria (GDC) (known alternatively as gadolinia doped ceria, gadolinium doped cerium oxide, cerium(IV) oxide-gadolinium doped, and GCO, formula Gd:CeO2) is a ceramic electrolyte used in solid oxide fuel cells (SOFCs). It has a cubic structure and a density of around 7.2 g/cm3 in its oxidised form. It is one of a class of ceria-doped electrolytes with higher ionic conductivity and lower operating temperatures (<700 °C) than those of yttria-stabilized zirconia, the material most commonly used in SOFCs. Because YSZ requires operating temperatures of 800-1000 °C to achieve maximal ionic conductivity, the associated energy and costs make GDC a more optimal (even "irreplaceable", according to researchers from the Fraunhofer Institute ) material for commercially viable SOFCs.
==Structure and properties==
Oxygen vacancies are created when gadolinium (a trivalent cation) is introduced into ceria (a 4+ ion) or on reduction in CO or H2.〔 The high concentration and mobility of the oxide ion vacancies results in a high ionic conductivity in this material. In addition to its high ionic conductivity CGO is an attractive alternative to YSZ as an electrolyte due to low reactivity and good chemical compatibility with many mixed conducting cathode materials.〔Garche, Jurgen. et al., ed. Encyclopedia of Electrochemical Power Sources. Oxford: Newnes, 2009.〕 Dopant levels of Gd typically range from 10-20%. The majority of SOFC researchers and manufacturers still favor the use of YSZ over CGO due to YSZ having superior strength and because CGO will reduce at high temperature when exposed to H2 or CO.〔

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