Xingpeng LiuBin PengWanli ZhangJun ZhuXingzhao LiuMeng Wei
In order to develop a film electrode for the surface acoustic wave (SAW) devices working in high temperature, harsh environments, novel AlN/Pt/ZnO multilayers were prepared using pulsed laser deposition (PLD) systems on langasite (LGS) substrates. The AlN film was used as a protective layer and the ZnO buffer layer was introduced to improve the crystal quality of Pt films. The results show that the resistances of Pt and AlN/Pt film electrodes violently increase above 600 °C and 800 °C, respectively, while the resistances of AlN/Pt/ZnO electrodes have more stable electrical resistance from room temperature to 1000 °C. The AlN/Pt/ZnO electrode, where the ZnO film was deposited at 600 °C, has the best temperature stability and can steadily work for 4 h at 1000 °C. The mechanism underlying the stable resistance of the AlN/Pt/ZnO electrode at a high temperature was investigated by analyzing the microstructure of the prepared samples. The proposed AlN/Pt/ZnO film electrode has great potential for applications in high temperature SAW sensors.
Yong RuanYang ChenYu WuMeng ShiYan DuZhiqiang SongYiyang ChenHelei DongCongchun ZhangJiao Teng
Natalya NaumenkoPascal Nicolay
Yihong ZhangWeipeng XuanDaiqing ZhuShurong DongHao JinJikui Luo
Xingpeng LiuBin PengW ZhangJun Zhu