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Ambipolar thermoelectric power of chemically-exfoliated RuO2 nanosheets

机译:化学剥离ruo2纳米蛋白的Ambipolar热电力

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摘要

The electrical conductivity and Seebeck coefficient of RuO2 nanosheets are enhanced by metal nanoparticle doping using Ag-acetate solutions. In this study, RuO2 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 RuO2 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 RuO2 nanosheets show ambipolar carrier transport behavior. By contrast, the sign of the Seebeck coefficient for Ag nanoparticle-doped RuO2 nanosheets does not change with temperature, indicating that the extra charge carriers from metal nanoparticles promote n-type semiconductor behavior.
机译:通过使用Ag-乙酸盐溶液,通过金属纳米颗粒掺杂增强了RuO2纳米片的电导率和塞贝克系数。 在该研究中,从层状碱金属钌酸盐中剥离的RuO2单层和双层纳米片转移到用于器件制造的Si基板,并且研究了它们的导电性和塞贝克系数的温度依赖性。 对于原始的Ruo2纳米片,塞贝克系数的迹象与350-450 K的温度变化。这表明所占的电荷载体依赖于温度,Ruo2纳米蛋白酶展示Ambolar载体传输行为。 相比之下,Ag纳米粒子掺杂RuO2纳米片的Seebeck系数的标志不会随温度而改变,表明来自金属纳米颗粒的额外电荷载流子促进n型半导体行为。

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