具有金属导电性的ATiO{3-x) H{x) (A = Ba, Sr, Ca) 的长轴薄膜
Takeshi Yajima1, Atsushi Kitada, Yoji Kobayashi
1Department of Energy and Hydrocarbon Chemistry, Graduate School of Engineering, Kyoto University, Nishikyo-ku, Kyoto 615-8510, Japan.
Journal of the American Chemical Society
|May 9, 2012
概括
长轴性矿氧化呈现金属导电性,与其粉末对应物不同. 这些化膜显示了先进化物扩散研究和混合离子导体的潜力.
科学领域:
- 材料科学 材料科学 材料科学
- 固态化学 固态化学
- 薄膜技术 薄膜技术
背景情况:
- 矿氧化物是具有可调节电子性能的多功能材料.
- 泰坦酸矿 (ATiO3) 对各种应用进行了广泛的研究.
- 将化物 (H-) 纳入氧化物格子中,为新型材料特性提供了机会.
研究的目的:
- 为了合成表轴性矿氧化水化物薄膜 (ATiO3-xHx).
- 研究这些新型材料的结构和电子特性.
- 探索它们作为化物扩散介质和混合导体的潜力.
主要方法:
- 在LSAT基板上沉积了Epitaxial ATiO3薄膜.
- 使用CaH2降解方法将化物引入膜中.
- 二次离子质谱学 (SIMS) 用于化物度分析.
- 进行电阻测量以确定温度依赖性和导电性.
主要成果:
- 在ATiO3-xHx膜中证实了大量和均的化物分布.
- 所有合成的薄膜都表现出金属 (正) 电阻的温度依赖性.
- 观察到高电导率 (10^210^4 S/cm),表明内在的金属行为.
- 在用D2气处理时,证明了化物/化物交换.
结论:
- 长轴ATiO3-xHx薄膜本质上是金属的,具有高电子导电性.
- 这些材料对研究化物扩散动力学充满希望.
- 混合电子/化物离子导体的开发是潜在的未来应用.
相关概念视频
Metallic Solids
Metallic solids such as crystals of copper, aluminum, and iron are formed by metal atoms. The structure of metallic crystals is often described as a uniform distribution of atomic nuclei within a “sea” of delocalized electrons. The atoms within such a metallic solid are held together by a unique force known as metallic bonding that gives rise to many useful and varied bulk properties.
All metallic solids exhibit high thermal and electrical conductivity, metallic luster, and malleability. Many...
All metallic solids exhibit high thermal and electrical conductivity, metallic luster, and malleability. Many...
Ionic Association
The ionic association is the association of oppositely charged ions in an electrolyte solution to form ion pairs. Bjerrum defined ion pairs as two oppositely charged ions whose electrostatic attraction exceeds the thermal energy of the system, typically expressed as 2kT. Electrostatic attraction depends on ionic charge, separation distance, and the dielectric constant of the medium. Thermal energy, represented by kT, reflects the tendency of ions to move independently due to molecular motion.
Ionic Crystal Structures
Ionic crystals consist of two or more different kinds of ions that usually have different sizes. The packing of these ions into a crystal structure is more complex than the packing of metal atoms that are the same size.
Most monatomic ions behave as charged spheres, and their attraction for ions of opposite charge is the same in every direction. Consequently, stable structures for ionic compounds result (1) when ions of one charge are surrounded by as many ions as possible of the opposite...
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