Food Engineering, URI - Erechim, Av. Sete de Setembro 1621, 99709-910 Erechim, RS, Brazil.
Nanotechnology National Laboratory for Agribusiness (LNNA), Embrapa Instrumentation, 13560-970 São Carlos, SP, Brazil.
Anal Methods. 2021 Sep 16;13(35):3900-3908. doi: 10.1039/d1ay00987g.
In this study, polyaniline/poly(styrene sulfonate) (PANI/PSS) nanocomposite and polyaniline·silver (PANI·Ag) nanohybrid thin films were obtained in cantilever nanosensors surface. The developed films were characterized in relation to topography, roughness, thickness, height, and structural properties. The topography study revealed that both films have a globular morphology, thickness and height in nanoscale. The gas sensing performance was investigated for sexual pheromone from the neotropical brown stink bug, (F.). The sensitivities of both nanosensors based on PANI/PSS nanocomposite and PANI·Ag nanohybrid films were similar. The PANI·Ag nanohybrid nanosensor had a limit of detection of less than 3.1 ppq and limit of quantification of 10.05 ppq. The nanosensor layers were analyzed by UV-vis and FTIR showing the incorporation of Ag nanoparticles in the nanohybrid. We found that pheromone compound was adsorbed in sensing layer resulting in a reduction in the resonance frequency. The detection mechanism help us understand the good results of LOD, LOQ, sensitivity, selectivity and repeatability. The presented device has great potential for detection of the sexual pheromone from .
在这项研究中,聚(苯乙烯磺酸盐)/聚苯胺(PANI/PSS)纳米复合材料和聚苯胺·银(PANI·Ag)纳米杂化薄膜在悬臂纳米传感器表面上获得。开发的薄膜在形貌、粗糙度、厚度、高度和结构性质方面进行了表征。形貌研究表明,两种薄膜均具有球形形态,厚度和高度在纳米范围内。研究了性信息素对新热带棕臭虫(F.)的气敏性能。基于 PANI/PSS 纳米复合材料和 PANI·Ag 纳米杂化薄膜的两种纳米传感器的灵敏度相似。PANI·Ag 纳米杂化纳米传感器的检测限低于 3.1 ppq,定量限为 10.05 ppq。通过 UV-vis 和 FTIR 分析纳米传感器层,表明纳米杂化中掺入了 Ag 纳米粒子。我们发现信息素化合物被吸附在传感层中,导致共振频率降低。检测机制有助于我们理解低检测限、低定量限、灵敏度、选择性和重复性的良好结果。所提出的装置在检测 性信息素方面具有很大的潜力。