Abstract:
A thermoelectric material including: a thermoelectric matrix; and a plurality of metal nanoparticles disposed in the thermoelectric matrix, wherein a difference between a work function of thermoelectric matrix and a work function of a metal particle of the metal nanoparticles is about −1.0 electron volt to about 1.0 electron volt.
Abstract:
A soft magnetic exchange-coupled composite structure, and a high-frequency device component, an antenna module, and a magnetoresistive device including the soft magnetic exchange-coupled composite structure, include a ferrite crystal grain as a main phase and a soft magnetic metal thin film bound to the ferrite crystal grain by interfacial bonding on an atomic scale. A region of the soft magnetic metal thin film adjacent to an interface with the ferrite crystal grain includes a crystalline soft magnetic metal.
Abstract:
Hard magnetic exchange-coupled composite structures and perpendicular magnetic recording media including the hard magnetic exchange-coupled composite structures, include a ferrite crystal grain and a soft magnetic metal thin film bounded to the ferrite crystal grain by interfacial bonding on an atomic scale and having a thickness of about 5 nm or less, wherein a region of the soft magnetic metal thin film adjacent to an interface with the ferrite crystal grain includes an amorphous soft magnetic metal film.
Abstract:
A thermoelectric material including: a thermoelectric matrix including grains with a composition of Formula 1: (BixSb1-x)a(TeySe1-y)b Formula 1 wherein 1.8≦a≦2.2, 2.8≦b≦3.2, 0≦x≦1, and 0≦y≦1, and wherein a plurality of dislocations is present along a grain boundary between adjacent grains of the composition of Formula 1.
Abstract translation:一种热电材料,包括:包含具有式1的组成的晶粒的热电基体:(BixSb1-x)a(TeySe1-y)bFormula 1,其中1.8 @ a @ 2.2,2.8 @ b @ 3.2,0 @ x1和 0 @ y @ 1,并且其中沿着式1的组合物的相邻颗粒之间的晶界存在多个位错。