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投稿一覧(最新100件)
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Additive effect of NiO on electrochemical properties of mixed ion conductor BaZr0.1Ce0.7Y0.1Yb0.1O3−δ
https://t.co/XsWoK8TsTL https://t.co/aSBVU0CQdQ https://t.co/yA2aYAP73U https://t.co/Hg2XmZhuCj https://t.co/qf0XuAbu43 https://t.co/AYzjhr4LVL https://t.co/olaT4BgVu8 https://t.co/kUUHJbBfzo https://t.co/b5PLKPaPGX https://t.co/gOBUIgwZac
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Decomposition reaction of BaZr0.1Ce0.7Y0.1Yb0.1O3−δ in carbon dioxide atmosphere with nickel sintering aid
https://t.co/hBeSQu3HKz https://t.co/7SLt0tdfq6 https://t.co/Rv5eXhr8FC https://t.co/lMpThTAmaJ https://t.co/j1aLMqWpjj https://t.co/vOVtAwEjOS https://t.co/8pN5I031Cu https://t.co/06snemEimJ https://t.co/lWOtK7OCRk
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Observation of Cation Diffusion and Phase Formation between Solid Oxide Layers of Lanthanum Gallate-Based Fuel Cells
@ihteubras @urfu @Ural_Federal https://t.co/hkbXO6UXQs https://t.co/QrpdzozVH6 https://t.co/jHKd88Abor https://t.co/5WFqftj7x6 https://t.co/ym4doK9ug8 https://t.co/KldpLsTGgi https://t.co/f86toTGS64 https://t.co/xyjEKnVSq4 https://t.co/5cqlQFbMma https://t.co/HNZXpZ8LKM
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Adjustment of GDC layer microstructure and its influence on the electrochemical properties of microtubular SOFCs
@ihteubras @urfu @Ural_Federal https://t.co/egk9SUaCN0 https://t.co/oGQ8XamSEZ https://t.co/jrk0rprBMR https://t.co/ml5X3GhnYV https://t.co/GuH7tYHvNm https://t.co/WbVJRaTFqq https://t.co/pmtmJKjJN7 https://t.co/s7i7YxrpIP https://t.co/OHDnVbrqty https://t.co/r3xT84NSWQ
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Crystal structure analysis of Ln2Zr2O7 (Ln = Eu and La) with a pyrochlore composition by high-temperature powder X-ray diffraction
@ihteubras @urfu @Ural_Federal https://t.co/EDHVcdrCiC https://t.co/vD1ejj3KDI https://t.co/aY7MI6wd86 https://t.co/67TynGOudD https://t.co/ERE2wH2Zk9 https://t.co/v3dBGJazmd https://t.co/ANL6hmQY38 https://t.co/xU5vD5p6ZL https://t.co/5fJNzmOGXB https://t.co/tJ1AUgdlw3
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Relationship between crystal structure and oxide-ion conduction in Ln2Zr2O7 (Ln = Eu, Nd and La) system deduced by neutron and X-ray diffraction
@ihteubras @urfu @Ural_Federal https://t.co/SnF4Glgk13 https://t.co/Vy7SxTJZUP https://t.co/4DnI5WE8Jv https://t.co/5MWpONHO8J https://t.co/FX1DcWVsjp https://t.co/4y8KTLX1xg https://t.co/rliye7fpW2 https://t.co/B7S9Mmd9wN https://t.co/DGPofZkNPm https://t.co/VDIOabLnUK
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ネオジムイットリウムフッ化酸化物の合成と電気伝導性
@ihteubras @urfu @Ural_Federal @ComeniusUni @QAU_Official @csirimmt https://t.co/op7StPlE8s https://t.co/RchXAK7Jni https://t.co/LI42dmLbmN https://t.co/sHvTTWMrrD https://t.co/bl1E8nGN4F https://t.co/XmPVS5vXnE https://t.co/DwiZUavvuo https://t.co/iIu9Uuj3E0 https://t.co/7hruL4k0qe https://t.co/wWJxZwXFT8
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希土類固溶セリアの熱膨張
https://t.co/Ke0CmPg0zO https://t.co/QGcUZj8BPY https://t.co/fB89wONi9a https://t.co/RwU8Ifu8iP https://t.co/migo8CSnq5 https://t.co/x8AeKQQ6O4 https://t.co/ai6d7Wi6L7 https://t.co/aDNlSnWWt6 https://t.co/ab46wD7ilL
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Optimization of deposition conditions of yttrium doped-SrZrO3 thin films fabricated by pulsed laser deposition
https://t.co/SjFF5v9YAH. https://t.co/nHsiE3Mc77. https://t.co/kSv8KEeIXl. https://t.co/g5h4AHgTgI. https://t.co/opATmR988y. https://t.co/xyG6lyKqLL. https://t.co/dsdOMUWZbw. https://t.co/dBvp4I9D66. https://t.co/00sbYbN1EU. https://t.co/YuERbAXzCR.
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Oxide ion conductivity in defect perovskite, Pr2NiO4 and its application for solid oxide fuel cells
Refs https://t.co/AxX9U9wAgl https://t.co/mCkoAQF0ns https://t.co/XeAHar480F https://t.co/4v1fB5I6mk https://t.co/50MuhiVpiB https://t.co/Yyd3Out3jq https://t.co/seVNGdC9M5 https://t.co/4AYenPqsqD https://t.co/Fyds9PJpdA
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Proton Conduction and Incorporation into La1−xBaxYb0.5In0.5O3−δ
https://t.co/RwiliEcFWu https://t.co/fy8Ry4WglA https://t.co/CchlTouVoI https://t.co/rZKfgj5q7M https://t.co/wC4k666qEe https://t.co/z5gdDQkcpA https://t.co/JvkgfsJ2hQ https://t.co/r3oZB4aLHw https://t.co/idKc3SqwEy
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La0.6Sr0.4Co0.2Fe0.8O3−δ–Ba(Ce,Co,Y)O3−δ Composite Cathodes for Proton-conducting Ceramic Fuel Cells
https://t.co/VmUoLTmqkD https://t.co/hfoYPy8C9N https://t.co/ZaXtwz9rUd https://t.co/GuwBDalVrQ https://t.co/sXghthiEUJ https://t.co/UsnmKkkh0Q https://t.co/xtO4Fai8iA https://t.co/VJejMB5lV6 .
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Chemical compatibility of Sr2MgMoO6−δ with representative electrolyte materials and interlayer materials for solid oxide fuel cells
https://t.co/qZ8iPAtqiD https://t.co/staRU0qzzZ https://t.co/2cA6GRtFTq https://t.co/v44as4BF0i https://t.co/BUAbzRgQLa https://t.co/IDFhrHtdkX https://t.co/YXtPh16T9z https://t.co/kcdrBlFHNE https://t.co/625csJLYI1 https://t.co/Z1jj6GiYKB .
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Thermoelectric properties of double-perovskite oxide Sr2-xMxFeMoO6 (M = Ba, La)
https://t.co/Wd1o213Rfa https://t.co/Us2GAeI61E https://t.co/VzMxUSthOH https://t.co/IN6GEFEa6H https://t.co/oOVBTS8238 https://t.co/NQdewGFuQS https://t.co/3wTOkiurpr https://t.co/cAcM04M5xR https://t.co/NOfCPIqlbr https://t.co/PENLmE6x5d .
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Electrical conductivity of Sr2MgMoO6−δ for solid oxide fuel cell anodes
https://t.co/OSVyOPZnyX https://t.co/xeCxhh0nKW https://t.co/migo8D9YhD https://t.co/9MBGUlTd9C https://t.co/4aTyDTf53N https://t.co/1o52DU2MIQ https://t.co/u2K8PZIA61 https://t.co/6ASELz0HTn https://t.co/e555O3cwil https://t.co/ALnKZjjeLq .
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Chemical compatibility of Sr2MgMoO6−δ with representative electrolyte materials and interlayer materials for solid oxide fuel cells
https://t.co/OSVyOPZnyX https://t.co/xeCxhh0nKW https://t.co/migo8D9YhD https://t.co/9MBGUlTd9C https://t.co/4aTyDTf53N https://t.co/1o52DU2MIQ https://t.co/u2K8PZIA61 https://t.co/6ASELz0HTn https://t.co/e555O3cwil https://t.co/ALnKZjjeLq .
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Thermoelectric properties of double-perovskite oxide Sr2-xMxFeMoO6 (M = Ba, La)
https://t.co/xCk4EMe1fb https://t.co/eODu9EQ61F https://t.co/Wd1o213Rfa https://t.co/Us2GAeI61E https://t.co/VzMxUSthOH https://t.co/IN6GEFEa6H https://t.co/oOVBTS8238 https://t.co/NQdewGFuQS https://t.co/3wTOkiurpr .
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Proton Conduction and Incorporation into La1−xBaxYb0.5In0.5O3−δ
https://t.co/hbEL6szhNo https://t.co/H05UoxFVyH https://t.co/VnS0LR77cZ https://t.co/ZY1Tl9x8Do https://t.co/r3oZB4adRY https://t.co/4LQyuguMKi https://t.co/JhacEW79yO https://t.co/2aL8Im2tZQ https://t.co/AyEm7wu5Km https://t.co/iOz92hJ3lF .
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Oxide Ion Conduction in the Perovskite-type LaYO3 Doped with ZrO2
https://t.co/6Fn5E6cC2Q https://t.co/CaX5TGztxU https://t.co/A61nrIzWuF https://t.co/DJM7BLD1ZN https://t.co/yS3VNRHpSS https://t.co/H86h5H0OrZ https://t.co/yuzOUDoWUc https://t.co/oPzbmKnFU1 https://t.co/RYHUJOtmB7 https://t.co/F9FDrsiFFr .
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La2O3-Y2O3系の高温状態図
https://t.co/4LBQV5Onck https://t.co/vNMXsJRY5O https://t.co/9N4eX93DNR https://t.co/WEDJWdTLfM https://t.co/eaDNOMHvEO https://t.co/TAdsghYFtW https://t.co/ckBqZ2e8r1 https://t.co/fB483hoC0E https://t.co/oOSuFI8flF https://t.co/EkUNWwZfEL .
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Relationship between Local Structure and Oxide Ionic Diffusion of Nd2NiO4+δ with K2NiF4 Structure
https://t.co/KGaYap7gDq. https://t.co/cWx98ZjLSn. https://t.co/ygsqi0o5GA. https://t.co/jm9s9ZTxKF. https://t.co/agxaE9CHX0.
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Relationship between Local Structure and Oxide Ionic Diffusion of Nd2NiO4+δ with K2NiF4 Structure
https://t.co/G5y55V7nqs. https://t.co/dFciseQg9a. https://t.co/T02U7nU2XM. https://t.co/Qu6xS5hIJK. https://t.co/9MzKvpiZaa. https://t.co/s7KiG4lJmf. https://t.co/NczKtMYv6J. https://t.co/KGaYap7gDq.
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La0.6Sr0.4Co0.2Fe0.8O3−δ–Ba(Ce,Co,Y)O3−δ Composite Cathodes for Proton-conducting Ceramic Fuel Cells
https://t.co/G5y55V7nqs. https://t.co/dFciseQg9a. https://t.co/T02U7nU2XM. https://t.co/Qu6xS5hIJK. https://t.co/9MzKvpiZaa. https://t.co/s7KiG4lJmf. https://t.co/NczKtMYv6J. https://t.co/KGaYap7gDq.
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