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Improvement of High-Temperature Stability of Al2O3/Pt/ZnO/Al2O3 Film Electrode for SAW Devices by Using Al2O3 Barrier Layer

机译:利用Al2O3势垒层提高SAW器件Al2O3 / Pt / ZnO / Al2O3薄膜电极的高温稳定性。

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摘要

In order to develop film electrodes for the surface acoustic wave (SAW) devices operating in harsh high-temperature environments, novel Al2O3/Pt/ZnO/Al2O3 multilayered film electrodes were prepared by laser molecular beam epitaxy (LMBE) at 150 °C. The first Al2O3 layer was used as a barrier layer to prevent the diffusion of Ga, La, and Si atoms from the La3Ga5SiO14 (LGS) substrate to the film electrode and thus improved the crystalline quality of ZnO and Pt films. It was found that the resistance of the Al2O3/Pt/ZnO/Al2O3 electrode did not vary up to a temperature of 1150 °C, suggesting a high reliability of electrode under harsh high-temperature environments. The mechanism of the stable resistance of the Al2O3/Pt/ZnO/Al2O3 film electrodes at high temperature was investigated by analyzing its microstructure. The proposed Al2O3/Pt/ZnO/Al2O3 film electrode has great potential for application in high-temperature SAW devices.
机译:为了开发用于在苛刻的高温环境下运行的表面声波(SAW)器件的薄膜电极,在150°C下通过激光分子束外延(LMBE)制备了新型的Al2O3 / Pt / ZnO / Al2O3多层薄膜电极。第一Al2O3层用作阻挡层,以防止Ga,La和Si原子从La3Ga5SiO14(LGS)基板扩散到膜电极,从而提高了ZnO和Pt膜的结晶质量。发现Al2O3 / Pt / ZnO / Al2O3电极的电阻在高达1150°C的温度下不会发生变化,这表明电极在苛刻的高温环境下具有很高的可靠性。通过分析Al2O3 / Pt / ZnO / Al2O 3 薄膜电极在高温下的稳定电阻机理,研究了其稳定性。提出的Al 2 O 3 / Pt / ZnO / Al 2 O 3 薄膜电极具有很大的应用潜力在高温声表面波器件中。

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