Krawczyk Maciej, Suchorska-Woźniak Patrycja, Szukiewicz Rafał, Kuchowicz Maciej, Korbutowicz Ryszard, Teterycz Helena
Faculty of Microsystem Electronics and Photonics, Wrocław University of Science and Technology, Wybrzeże Wyspiańskiego 27, 50-370 Wrocław, Poland.
Institute of Experimental Physics, University of Wrocław, Maxa Borna 9, 50-204 Wrocław, Poland.
Nanomaterials (Basel). 2021 Feb 11;11(2):456. doi: 10.3390/nano11020456.
Gas sensitive structures made of nanowires exhibit extremally large specific surface area, and a great number of chemically active centres that can react with the ambient atmosphere. This makes the use of nanomaterials promising for super sensitive gas sensor applications. Monoclinic β-GaO nanowires (NWs) were synthesized from metallic gallium at atmospheric pressure in the presence of nitrogen and water vapor. The nanowires were grown directly on interdigitated gold electrodes screen printed on AlO substrates, which constituted the gas sensor structure. The observations made with transmission electron microscope (TEM) have shown that the nanowires are monocrystalline and their diameters vary from 80 to 300 nm with the average value of approximately 170 nm. Au droplets were found to be anchored at the tips of the nanowires which may indicate that the nanowires followed the Vapor-Liquid-Solid (VLS) mechanism of growth. The conductivity of β-GaO NWs increases in the presence of volatile organic compounds (VOC) even in the temperature below 600 °C. The gas sensor based on the synthesized β-GaO NWs shows peak sensitivity to 100 ppm of ethanol of 75.1 at 760 °C, while peak sensitivity to 100 ppm of acetone is 27.5 at 690 °C.
由纳米线制成的气敏结构具有极大的比表面积,以及大量可与周围大气发生反应的化学活性中心。这使得纳米材料有望用于超灵敏气体传感器应用。在氮气和水蒸气存在的情况下,于大气压下由金属镓合成了单斜β-GaO纳米线(NWs)。这些纳米线直接生长在印刷在AlO衬底上的叉指式金电极上,该电极构成了气体传感器结构。用透射电子显微镜(TEM)进行的观察表明,纳米线是单晶的,其直径在80至300纳米之间变化,平均值约为170纳米。发现金液滴锚定在纳米线的尖端,这可能表明纳米线遵循气-液-固(VLS)生长机制。即使在低于600°C的温度下,挥发性有机化合物(VOC)的存在也会使β-GaO NWs的电导率增加。基于合成的β-GaO NWs的气体传感器在760°C时对100 ppm乙醇的峰值灵敏度为75.1,而在690°C时对100 ppm丙酮的峰值灵敏度为27.5。