Brazilian Nanotechnology National Laboratory (LNNano), CNPEM, 13083-970, Campinas, SP, Brazil.
Department of Physical Chemistry, Institute of Chemistry (IQ), UNICAMP, 13084-862, Campinas, SP, Brazil.
Sci Rep. 2017 Feb 27;7:43432. doi: 10.1038/srep43432.
Ethanol is a biofuel used worldwide. However, the presence of excessive water either during the distillation process or by fraudulent adulteration is a major concern in the use of ethanol fuel. High water levels may cause engine malfunction, in addition to being considered illegal. Here, we describe the development of a simple, fast and accurate platform based on nanostructured sensors to evaluate ethanol samples. The device fabrication is facile, based on standard microfabrication and thin-film deposition methods. The sensor operation relies on capacitance measurements employing a parallel plate capacitor containing a conformational aluminum oxide (AlO) thin layer (15 nm). The sensor operates over the full range water concentration, i.e., from approximately 0% to 100% vol. of water in ethanol, with water traces being detectable down to 0.5% vol. These characteristics make the proposed device unique with respect to other platforms. Finally, the good agreement between the sensor response and analyses performed by gas chromatography of ethanol biofuel endorses the accuracy of the proposed method. Due to the full operation range, the reported sensor has the technological potential for use as a point-of-care analytical tool at gas stations or in the chemical, pharmaceutical, and beverage industries, to mention a few.
乙醇是一种在世界范围内使用的生物燃料。然而,在蒸馏过程中或通过欺诈性掺假存在过量的水是乙醇燃料使用中的一个主要问题。高水平的水可能导致发动机故障,此外还被认为是非法的。在这里,我们描述了一种基于纳米结构传感器的简单、快速和准确的平台的开发,用于评估乙醇样品。该设备的制造简单,基于标准的微制造和薄膜沉积方法。传感器的操作依赖于电容测量,使用包含构象氧化铝(AlO)薄膜(15nm)的平行板电容器。该传感器在整个水浓度范围内工作,即在乙醇中约 0%至 100%的体积水范围内,可检测到低至 0.5%体积水的痕迹。这些特性使所提出的设备与其他平台相比具有独特性。最后,传感器的响应与通过气相色谱法对乙醇生物燃料进行的分析之间的良好一致性证实了所提出方法的准确性。由于全工作范围,所报道的传感器具有作为现场即时分析工具在加油站或化学、制药和饮料行业等领域使用的技术潜力。