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Ru-C Nano-composite Films Prepared by PECVD as an Electrode for an Oxygen Sensor

机译:Ru-C纳米复合膜由PECVD作为氧传感器的电极制备

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Ruthenium-Carbon (Ru-C) nano-composite films were prepared by microwave-induced plasma-enhanced chemical vapor deposition (PECVD) and the effects of deposition conditions on the microstructure and electrical properties were investigated. The films consisted of agglomerated grains of 10 to 20 nm in diameter, in which Ru particles of 2.5 to 3.5 nm in diameter were dispersed in an amorphous C matrix. The C contents of the films ranged from 86 to 94 vol%. The electrical properties of Ru-C nano-composite films as a catalytic electrode for an yttria-stabilized zirconia (YSZ) solid electrolyte were evaluated by AC impedance spectroscopy. The electrical conductivity at the Ru-C/YSZ interface (σ_i) was 0.2 × 10~(-3) Sm~(-1) at 500 K and increased with increasing temperature. The activation energy of the a, was 70 kJ/mol. Electro-motive-force (EMF) values of an oxygen concentration cell constructed from YSZ electrolyte and Ru-C nano-composite electrodes responded to the change of oxygen partial pressure above 473 K. The response time of the concentration cell was less than 10 s above 573 K.
机译:通过微波诱导的等离子体增强的化学气相沉积(PECVD)制备钌 - 碳(Ru-C)纳米复合膜,研究了沉积条件对微观结构和电性能的影响。由直径为10至20nm的附聚物组成的薄膜,其中直径为2.5至3.5nm的Ru颗粒被分散在无定形C基质中。薄膜的C含量范围为86至94体积%。通过AC阻抗光谱法评估作为氧化钇稳定的氧化锆(YSZ)固体电解质的催化电极作为催化电极的Ru-C纳米复合膜的电性能。 Ru-C / YSZ接口(σ_i)的电导率为0.2×10〜(-3)SM〜(-1),500 k,随着温度的增加而增加。 A的激活能量为70kJ / mol。由YSZ电解质和Ru-C纳米复合电极构成的氧浓度电池的电动力(EMF)值响应于473k以上的氧分压的变化。浓度细胞的响应时间小于10 s超过573 K.

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