Department of Materials Science and Engineering, Yonsei University, 50 Yonsei-ro, Seodaemoon-gu, Seoul, 03722, Republic of Korea.
Nanotechnology. 2018 Jan 5;29(1):015404. doi: 10.1088/1361-6528/aa98ea.
The electrical conductivity and Seebeck coefficient of RuO nanosheets are enhanced by metal nanoparticle doping using Ag-acetate solutions. In this study, RuO monolayer and bilayer nanosheets exfoliated from layered alkali metal ruthenates are transferred to Si substrates for device fabrication, and the temperature dependence of their conductivity and Seebeck coefficients is investigated. For pristine RuO nanosheets, the sign of the Seebeck coefficient changes with temperature from 350-450 K. This indicates that the dominant type of charge carrier is dependent on the temperature, and the RuO nanosheets show ambipolar carrier transport behavior. By contrast, the sign of the Seebeck coefficient for Ag nanoparticle-doped RuO nanosheets does not change with temperature, indicating that the extra charge carriers from metal nanoparticles promote n-type semiconductor behavior.
通过使用 Ag-醋酸盐溶液对 RuO 纳米片进行金属纳米粒子掺杂,可以提高其电导率和 Seebeck 系数。在这项研究中,从层状碱金属钌酸盐中剥离出的 RuO 单层和双层纳米片被转移到 Si 衬底上用于器件制造,并研究了它们的电导率和 Seebeck 系数随温度的变化关系。对于原始的 RuO 纳米片,在 350-450 K 的温度范围内,Seebeck 系数的符号随温度而变化。这表明主导电荷载流子的类型取决于温度,并且 RuO 纳米片表现出双极载流子输运行为。相比之下,Ag 纳米粒子掺杂的 RuO 纳米片的 Seebeck 系数的符号随温度不变,表明来自金属纳米粒子的额外电荷载流子促进了 n 型半导体行为。