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- W3193271510 abstract "With rapid development of intelligent system, artificial intelligent application and internet of things, there is a great demand for gas sensors with fast response and low power consumption. Past efforts using nanotechnology and two-dimensional materials could not break the bottle net limit of response time of millisecond range. The limit is reached in our cross-stacked nanojunction gas sensor with microwatt power consumption that is proposed and fabricated in this study. The sensor is formed by two cross-stacked platinum coated WO3 nanorods and works relying on the nanojunction at the cross point. The device shows a very fast response of 80 ms at the operating temperature of 110 ℃ to pure H2, and exhibits a lower power consumption of < 6 μW at the operating temperature of 30 ℃, at which the device has the capability of detection of low concentration H2, down to 10 ppm. An electronic dynamic model and underlying mechanisms are presented not only explaining the observed results but also giving guidance to making of best devices." @default.
- W3193271510 created "2021-08-16" @default.
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- W3193271510 date "2021-11-01" @default.
- W3193271510 modified "2023-10-04" @default.
- W3193271510 title "A millisecond response and microwatt power-consumption gas sensor: Realization based on cross-stacked individual Pt-coated WO3 nanorods" @default.
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- W3193271510 doi "https://doi.org/10.1016/j.snb.2021.130545" @default.
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