Abstract:
A conductor includes a plurality of metal nanostructures having a circular cross-sectional shape, where each of the metal nanostructure is surrounded by an organic material having a thickness of less than or equal to about 0.5 nm. A method of manufacturing a conductor includes preparing a metal nanostructure having a polygonal cross-sectional shape, and providing a metal nanostructure having a circular cross-sectional shape by supplying light to the metal nanostructure having a polygonal cross-sectional shape.
Abstract:
A method of preparing a conductor including a first conductive layer including a plurality of metal oxide nanosheets, the method including: preparing a coating liquid including a plurality of metal oxide nanosheets, wherein an intercalant is attached to a surface of the nanosheets, applying the coating liquid to a substrate to provide a first conductive layer including a plurality of metal oxide nanosheets, and performing a surface treatment on the first conductive layer to remove at least a portion of the intercalant.
Abstract:
A composite including: a nickel compound represented by Formula 1: Ni1-xM1xOy Formula 1 wherein M1 is silicon (Si), germanium (Ge), molybdenum (Mo), or a combination thereof, and 0≦x≦0.3 and 0≦y≦3; and a yttria-stabilized zirconia including cerium (Ce), titanium (Ti), or a combination thereof.
Abstract:
A functional layer material for a solid oxide fuel cell (SOFC) including a ceria ceramic oxide and a metal oxide including a metal, except for zirconium, having a Vegard's slope X represented by Equation 1 and having an absolute value |X| of the Vegard's slope X, wherein 27×105≦|X|≦45×105: X=(0.0220ri+0.00015zi) (1), wherein ri is an ionic radius difference between the metal and Ce4+, and zi is a charge difference between the metal and Ce4+.
Abstract translation:一种用于固体氧化物燃料电池(SOFC)的功能层材料,其包括二氧化铈陶瓷氧化物和包含除了锆之外的金属的金属氧化物,其具有由等式1表示的Vegard斜率X并具有绝对值| X | 的Vegard斜率X,其中ri是金属和Ce4 +之间的离子半径差,zi是电荷的离子半径差,其中27×105 @ | X | @ 45×105:X =(0.0220ri + 0.00015zi)(1) 金属与Ce4 +之间的差异。