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2023年论文

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Humidity-activated ammonia sensor based on mesoporous AlOOH towards breath diagnosis

发布时间:2023.06.29点击:

【作者】:Wu, H.; Gong, X.; Tao, W.; Zhao, L.; Wang, T.; Liu, F.; Yan, X.; Sun, P.; Lu, G.

【题目】:Humidity-activated ammonia sensor based on mesoporous AlOOH towards breath diagnosis

【关键词】:Mesoporous AlOOH; Ammonia sensor; Humidity-activation; Exhaled breath analysis; High selectivity.

【版面信息】:Sensors and Actuators B: Chemical 2023, 380, 133322.

摘要:

Discrimination and quantitation of ammonia (NH3) exhaled from human beings using oxide chemiresistors has shown great potential for non-invasive and direct diagnosis of helicobacter pylori gastropathy and end-stage renal disease. Herein, a newly humidity-activated sensor employing AlOOH that synthesized by a simple approach consisting of in-situ etching treatment and hydrothermal method is designed and demonstrated. The humidity-activated AlOOH sensor exhibits a high selectivity and response toward ppb-level of NH3 under 98 % relative humidity at room temperature, neglecting the water poisoning effect on gas-sensing characteristics. The enhanced adsorption of NH3 at abundant Bronsted acid sites, and the effective ammonium ionic transmitting pathway induced by adsorbed moisture are proposed as the reasons behind the humidity-activated gas-sensing mechanism. Analysis using direct current analysis, complex impedance spectra and temperature programmed desorption (TPD) are performed to verify the above proposals. This study provides new pathway for rapid and stable detection of NH3 in human breath.


原文链接:https://doi.org/10.1016/j.snb.2023.133322

论文作者 Wu, H.; Gong, X.; Tao, W.; Zhao, L.; Wang, T.; Liu, F.; Yan, X.; Sun, P.; Lu, G. 论文关键词 Mesoporous AlOOH; Ammonia sensor; Humidity-activation; Exhaled breath analysis; High selectivity.
版面信息 Sensors and Actuators B: Chemical 2023, 380, 133322.