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Towards Low Cost and Low Temperature Capacitive CO2 Sensors Based on Amine Functionalized Silica Nanoparticles

机译:迈向基于胺功能化二氧化硅纳米粒子的低成本低温电容式CO2传感器

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摘要

Hybrid materials based on inorganic particles and an organic polymer were developed and used as an efficient sensing material for carbon dioxide (CO2). The sensing material consists of fumed silica that is functionalized with an organic polymer, polyethylenimine, by means of the impregnation method. The organic polymer is effectively immobilized around the silica nanoparticles and confirmed by infrared spectroscopy. Thermogravimetric analysis proves the thermal stability of the sensing material. CO2 capacitive sensors operating at temperatures lower than 70 °C were fabricated by depositing a thin layer of hybrid sensing material on interdigitated gold electrodes. Impedance spectroscopy explored the sensing capability of the hybrid organic–inorganic material towards CO2 in the presence of different relative humidity levels, as well as its stability and reversibility. This strategy to couple organic and inorganic materials as a sensing layer for CO2 paves the way for the design of a low-cost CO2 sensor.
机译:开发了基于无机颗粒和有机聚合物的混合材料,并将其用作二氧化碳(CO2)的有效传感材料。传感材料由气相法二氧化硅组成,该气相法二氧化硅通过浸渍法被有机聚合物聚乙烯亚胺官能化。有机聚合物有效地固定在二氧化硅纳米颗粒周围,并通过红外光谱法确认。热重分析证明了传感材料的热稳定性。通过在指状金电极上沉积一薄层混合传感材料来制造在低于70°C的温度下工作的CO2电容式传感器。阻抗谱探索了在相对湿度不同的情况下,有机-无机杂化材料对二氧化碳的传感能力,以及其稳定性和可逆性。这种将有机和无机材料耦合为CO2传感层的策略为低成本CO2传感器的设计铺平了道路。

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