Aleksandrova Mariya, Kolev Georgi, Dobrikov Georgi, Brigadin Andrey, Lukin Alexander
Department of Microelectronics, Technical University of Sofia, 1000 Sofia, Bulgaria.
Swissimpianti Sagl, 6828 Balerna, Switzerland.
Nanomaterials (Basel). 2022 Jun 15;12(12):2066. doi: 10.3390/nano12122066.
Due to the unique combination of physicochemical and structural properties of carbyne-enriched nanocoatings, they can be used for the development of high-end electronic devices. We propose using it for the development of sensor platforms based on silicon bulk micromachined membranes that serve as a part of microcapacitors with flexible electrodes, with various sizes and topologies. The carbyne-enriched nanocoating was grown using the ion-assisted pulse-plasma deposition method in the form of 2D-ordered linear-chain carbon with interchain spacing in the range of approximately 4.8-5.03 Å. The main characteristics of the fabricated sensors, such as dynamic range, sensitivity, linearity, response, and recovery times, were measured as a function of the ethanol concentration and compared for the different sizes of the micromembranes and for the different surface states, such as patterned and non-patterned. The obtained results are the first step in the further optimization of these sensor platforms to reach more precise detection of volatile organic compounds for the needs of the healthcare, air monitoring, and other relevant fields of human health.
由于富含卡宾的纳米涂层具有独特的物理化学和结构特性组合,它们可用于高端电子设备的开发。我们建议将其用于基于硅体微机械加工膜的传感器平台开发,这些膜作为具有柔性电极的微电容器的一部分,具有各种尺寸和拓扑结构。使用离子辅助脉冲等离子体沉积方法生长富含卡宾的纳米涂层,其形式为二维有序线性链碳,链间距约为4.8 - 5.03 Å。所制造传感器的主要特性,如动态范围、灵敏度、线性度、响应和恢复时间,作为乙醇浓度的函数进行测量,并针对不同尺寸的微膜以及不同表面状态(如图案化和非图案化)进行比较。所得结果是进一步优化这些传感器平台的第一步,以满足医疗保健、空气监测和人类健康其他相关领域对挥发性有机化合物更精确检测的需求。