Itoh Toshio, Izu Noriya, Akamatsu Takafumi, Shin Woosuck, Miki Yusuke, Hirose Yasuo
National Institute of Advanced Industrial Science and Technology (AIST), Shimo-Shidami, Moriyama-ku, Nagoya 463-8560, Japan.
Taiyo Nippon Sanso Corporation, 10 Okubo, Tsukuba, Ibaraki 300-2611, Japan.
Sensors (Basel). 2015 Apr 21;15(4):9427-37. doi: 10.3390/s150409427.
We have investigated the catalytic layer in zirconium-doped cerium oxide, Ce0.9Zr0.1O2 (CeZr10) resistive oxygen sensors for reducing the effects of flammable gases, namely hydrogen and carbon monoxide. When the concentration of flammable gases is comparable to that of oxygen, the resistance of CeZr10 is affected by the presence of these gases. We have developed layered thick films, which consist of an oxygen sensor layer (CeZr10), an insulation layer (Al2O3), and a catalytic layer consisting of CeZr10 with 3 wt% added platinum, which was prepared via the screen printing method. The Pt-CeZr10 catalytic layer was found to prevent the detrimental effects of the flammable gases on the resistance of the sensor layer. This effect is due to the catalytic layer promoting the oxidation of hydrogen and carbon monoxide through the consumption of ambient O2 and/or the lattice oxygen atoms of the Pt-CeZr10 catalytic layer.
我们研究了锆掺杂氧化铈(Ce0.9Zr0.1O2,即CeZr10)电阻式氧传感器中的催化层,以减少可燃气体(即氢气和一氧化碳)的影响。当可燃气体浓度与氧气浓度相当时,CeZr10的电阻会受到这些气体存在的影响。我们开发了层状厚膜,其由氧传感器层(CeZr10)、绝缘层(Al2O3)以及由添加了3 wt%铂的CeZr10组成的催化层构成,该催化层通过丝网印刷法制备。发现Pt-CeZr10催化层可防止可燃气体对传感器层电阻产生有害影响。这种效果是由于催化层通过消耗环境中的O2和/或Pt-CeZr10催化层的晶格氧原子促进了氢气和一氧化碳的氧化。