Daneshkhah Ali, Shrestha Sudhir, Siegel Amanda, Varahramyan Kody, Agarwal Mangilal
Department of Electrical and Computer Engineering, Indiana University-Purdue University Indianapolis (IUPUI), Indianapolis, IN 46202, USA.
Integrated Nanosystems Development Institute (INDI), Indiana University-Purdue University Indianapolis (IUPUI), Indianapolis, IN 46202, USA.
Sensors (Basel). 2017 Mar 15;17(3):595. doi: 10.3390/s17030595.
Two methods for cross-selectivity enhancement of porous poly(vinylidene fluoride-hexafluoropropylene) (PVDF-HFP)/carbon black (CB) composite-based resistive sensors are provided. The sensors are tested with acetone and ethanol in the presence of humid air. Cross-selectivity is enhanced using two different methods to modify the basic response of the PVDF-HFP/CB sensing platform. In method I, the adsorption properties of PVDF-HFP/CB are altered by adding a polyethylene oxide (PEO) layer or by treating with infrared (IR). In method II, the effects of the interaction of acetone and ethanol are enhanced by adding diethylene carbonate (DEC) or PEO dispersed in DEC (PEO/DEC) to the film. The results suggest the approaches used in method I alter the composite ability to adsorb acetone and ethanol, while in method II, they alter the transduction characteristics of the composite. Using these approaches, sensor relative response to acetone was increased by 89% compared with the PVDF-HFP/CB untreated film, whereas sensor relative response to ethanol could be decreased by 57% or increased by 197%. Not only do these results demonstrate facile methods for increasing sensitivity of PVDF-HFP/CB film, used in parallel they demonstrate a roadmap for enhancing system cross-selectivity that can be applied to separate units on an array. Fabrication methods, experimental procedures and results are presented and discussed.
提供了两种提高基于多孔聚偏氟乙烯-六氟丙烯(PVDF-HFP)/炭黑(CB)复合材料的电阻式传感器交叉选择性的方法。在潮湿空气中,用丙酮和乙醇对传感器进行测试。使用两种不同方法来改变PVDF-HFP/CB传感平台的基本响应,从而提高交叉选择性。在方法I中,通过添加聚环氧乙烷(PEO)层或用红外(IR)处理来改变PVDF-HFP/CB的吸附性能。在方法II中,通过向薄膜中添加碳酸二乙酯(DEC)或分散在DEC中的PEO(PEO/DEC)来增强丙酮和乙醇相互作用的效果。结果表明,方法I中使用的方法改变了复合材料吸附丙酮和乙醇的能力,而在方法II中,它们改变了复合材料的传感特性。使用这些方法,与未处理的PVDF-HFP/CB薄膜相比,传感器对丙酮的相对响应提高了89%,而传感器对乙醇的相对响应可降低57%或提高197%。这些结果不仅证明了提高PVDF-HFP/CB薄膜灵敏度的简便方法,同时并行使用时还展示了增强系统交叉选择性的路线图,可应用于阵列中的单个单元。介绍并讨论了制造方法、实验步骤和结果。