Acoustic surface wave microhydrogen sensor and its production process
A surface acoustic wave and manufacturing process technology, used in the analysis of solids using sonic/ultrasonic/infrasonic waves, material analysis using sonic/ultrasonic/infrasonic waves, instruments, etc., can solve the problems of low sensitivity of hydrogen sensors, and achieve absolute concentration measurement. , enhance the sensitivity, reduce the effect of the impact
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Embodiment 1
[0026] Such as figure 1 , figure 2 As shown, the surface acoustic wave micro-hydrogen sensor of the present invention mainly includes: a piezoelectric substrate, an input IDT, an output IDT and a hydrogen sensitive film, an input IDT and an output IDT The aluminum interdigitated electrodes are attached to the piezoelectric substrate (PZT4). The hydrogen-sensitive film is composed of a palladium-silver alloy film and a tin dioxide film. The tin dioxide film is attached to the piezoelectric substrate, and the palladium-silver alloy film is attached to the two On the tin oxide film, thereby forming a double-layer sensitive film, the tin dioxide nano-film is 50nm thick, the length and width are 200 and 128μm, respectively, the palladium-silver alloy film is 20nm thick, and the palladium / silver weight ratio is 75 / 25. The width and length of the interdigital electrodes in the transducer are 12 and 128 μm, respectively, and the interdigital electrode spacing is 12 μm.
[0027] The...
Embodiment 2
[0038] Such as figure 1 , figure 2 As shown, the surface acoustic wave micro-hydrogen sensor of the present invention mainly includes: a piezoelectric substrate, an input IDT, an output IDT and a hydrogen sensitive film, an input IDT and an output IDT The aluminum interdigitated electrodes are attached to the piezoelectric substrate (PZT4). The hydrogen-sensitive film is composed of a palladium-silver alloy film and a tin dioxide film. The tin dioxide film is attached to the piezoelectric substrate, and the palladium-silver alloy film is attached to the two On the tin oxide film, thereby forming a double-layer sensitive film, the tin dioxide nano-film is 100nm thick, the length and width are 200 and 128μm, respectively, the palladium-silver alloy film is 20nm thick, and the palladium / silver weight ratio is 75 / 25. The width and length of the interdigital electrodes in the transducer are 12 and 128 μm, respectively, and the interdigital electrode spacing is 12 μm.
[0039] Th...
Embodiment 3
[0050] Such as figure 1 , figure 2 As shown, the surface acoustic wave micro-hydrogen sensor of the present invention mainly includes: a piezoelectric substrate, an input IDT, an output IDT and a hydrogen sensitive film, an input IDT and an output IDT The aluminum interdigitated electrodes are attached to the piezoelectric substrate (PZT4). The hydrogen-sensitive film is composed of a palladium-silver alloy film and a tin dioxide film. The tin dioxide film is attached to the piezoelectric substrate, and the palladium-silver alloy film is attached to the two On the tin oxide film, thereby forming a double-layer sensitive film, the tin dioxide nano-film is 50nm thick, the length and width are 200 and 128μm respectively, the palladium-silver alloy film is 40nm thick, and the palladium / silver weight ratio is 75 / 25. The width and length of the interdigital electrodes in the transducer are 12 and 128 μm, respectively, and the interdigital electrode spacing is 12 μm.
[0051] The ...
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