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首页> 外文期刊>Nature reviews Cancer >Reducing Humidity Response of Gas Sensors for Medical Applications: Use of Spark Discharge Synthesis of Metal Oxide Nanoparticles
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Reducing Humidity Response of Gas Sensors for Medical Applications: Use of Spark Discharge Synthesis of Metal Oxide Nanoparticles

机译:减少医疗应用气体传感器的湿度响应:使用火花放电合成金属氧化物纳米粒子

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The application of gas sensors in breath analysis is an important trend in the early diagnostics of different diseases including lung cancer, ulcers, and enteric infection. However, traditional methods of synthesis of metal oxide gas-sensing materials for semiconductor sensors based on wet sol-gel processes give relatively high sensitivity of the gas sensor to changing humidity. The sol-gel process leading to the formation of superficial hydroxyl groups on oxide particles is responsible for the strong response of the sensing material to this factor. In our work, we investigated the possibility to synthesize metal oxide materials with reduced sensitivity to water vapors. Dry synthesis of SnO2 nanoparticles was implemented in gas phase by spark discharge, enabling the reduction of the hydroxyl concentration on the surface and allowing the production of tin dioxide powder with specific surface area of about 40 m(2)/g after annealing at 610 degrees C. The drop in sensor resistance does not exceed 20% when air humidity increases from 40 to 100%, whereas the response to 100 ppm of hydrogen is a factor of 8 with very short response time of about 1 s. The sensor response was tested in mixtures of air with hydrogen, which is the marker of enteric infections and the marker of early stage fire, and in a mixture of air with lactate (marker of stomach cancer) and ammonia gas (marker of Helicobacter pylori, responsible for stomach ulcers).
机译:气体传感器在呼吸分析中的应用是不同疾病早期诊断的重要趋势,包括肺癌,溃疡和肠道感染。然而,基于湿溶胶 - 凝胶工艺的半导体传感器合成金属氧化物气体传感材料的传统方法,使气体传感器的敏感性相对高。导致氧化物颗粒上形成浅羟基的溶胶 - 凝胶方法是对传感材料对该因素的强响应的原因。在我们的工作中,我们调查了合成金属氧化物材料的可能性降低了对水蒸汽的敏感性。通过火花放电在气相中实施SnO2纳米颗粒的干合成,使得在610度退火后,使表面上的羟基浓度降低并允许产生约40μm(2)/ g的比表面积约40μm(2)/ g的二氧化锡粉末C.当空气湿度从40%增加到100%时,传感器电阻下降不超过20%,而对100ppm的氢气的响应是8倍,响应时间约为1 s。传感器响应在空气的混合物中用氢气进行测试,这是肠道感染的标志物和早期火灾的标志物,以及用乳酸乳酸的空气混合物(胃癌的标志物)和氨气(幽门螺杆菌标记物)。负责胃溃疡)。

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