Department of Functional Materials, University of Bayreuth, Bayreuth 95440, Germany.
Sensors (Basel). 2013 Apr 10;13(4):4760-80. doi: 10.3390/s130404760.
Half-cell potentials of the electrochemical cell Au, VWT | YSZ | Au are analyzed in dependence on oxygen and ammonia concentration at 550 °C. One of the gold electrodes is covered with a porous SCR catalyst, vanadia-tungstenia-titania (VWT). The cell is utilized as a potentiometric ammonia gas sensor and provides a semi-logarithmic characteristic curve with a high NH3 sensitivity and selectivity. The analyses of the Au | YSZ and Au, VWT | YSZ half-cells are conducted to describe the non-equilibrium behavior of the sensor device in light of mixed potential theory. Both electrode potentials provide a dependency on the NH3 concentration, whereby VWT, Au | YSZ shows a stronger effect which increases with increasing VWT coverage. The potential shifts in the anodic direction confirm the formation of mixed potentials at both electrodes resulting from electrochemical reactions of O2 and NH3 at the three-phase boundary. Polarization curves indicate Butler-Volmer-type kinetics. Modified polarization curves of the VWT covered electrode show an enhanced anodic reaction and an almost unaltered cathodic reaction. The NH3 dependency is dominated by the VWT coverage and it turns out that the catalytic properties of the VWT thick film are responsible for the electrode potential shift.
在 550°C 下,分析了电化学电池 Au、VWT | YSZ | Au 的半电池电势与氧气和氨浓度的关系。其中一个金电极被多孔 SCR 催化剂(钒钨钛,VWT)覆盖。该电池用作电位式氨气体传感器,提供具有高 NH3 灵敏度和选择性的半对数特性曲线。对 Au | YSZ 和 Au、VWT | YSZ 半电池进行分析,根据混合电势理论描述传感器装置的非平衡行为。两个电极电势都对 NH3 浓度具有依赖性,其中 VWT、Au | YSZ 表现出更强的效果,且随着 VWT 覆盖率的增加而增加。阳极方向的电势偏移证实了在三相边界处 O2 和 NH3 的电化学反应在两个电极处形成了混合电势。极化曲线表明存在 Butler-Volmer 型动力学。经修饰的 VWT 覆盖电极的极化曲线显示出增强的阳极反应和几乎不变的阴极反应。NH3 的依赖性主要由 VWT 覆盖率决定,事实证明,VWT 厚膜的催化性能是电极电势偏移的原因。