50 research outputs found
Disposable electrochromic polyaniline sensor based on a redox response using a conventional camera: A first approach to handheld analysis
We present a disposable optical sensor for Ascorbic Acid (AA). It uses a polyaniline based electrochromic sensing film that undergoes a color change when exposed to solutions of ascorbic acid at pH 3.0. The color is monitored by a conventional digital camera working with the hue (H) color coordinate. The electrochromic film was deposited on an Indium Tin Oxide (ITO) electrode by cyclic voltammetry and then characterized by atomic force microscopy, electrochemical and spectroscopic techniques. An estimation of the initial rate of H, as ΔH/Δt, is used as the analytical parameter and resulted in the following logarithmic relationship: ΔH/Δt = 0.029 log[AA] + 0.14, with a limit of detection of 17 μM. The relative standard deviation when using the same membrane 5 times was 7.4% for the blank, and 2.6% (for n = 3) on exposure to ascorbic acid in 160 μM concentration. The sensor is disposable and its applicability to pharmaceutical analysis was demonstrated. This configuration can be extended for future handheld configurations.We acknowledge financial support from the Junta de Andalucía (Proyecto de Excelencia P10-FQM-5974) and from the Ministerio de Economía y Competitividad (CTQ2013-44545-R). These projects were partially supported by European Regional Development Funds (ERDF)
Preparation and characterization of polypyrrole/graphene nanocomposite films and their electrochemical performance
A one-step electrochemical process had been employed to synthesize nanocomposite films of polypyrrole/graphene (PPy/GR) by electrochemical polymerisation on indium tin oxide (ITO) from an aqueous solution containing pyrrole monomer, graphene oxide (GO) nanosheets and sodium p-toluenesulfonate (NapTS). The X-ray diffraction (XRD) patterns showed that the typical peak of GO at 9.9o was missing from the nanocomposite’s diffraction pattern, suggesting that the GO had been stripped off of its oxygenous groups after the reaction. We postulated that a nanocomposite film was produced through a layer-by-layer deposition based on field emission scanning electron microscope (FESEM) images. The Raman spectroscopy profiles exhibited that the D/G intensity ratio (ID/IG) of PPy was not altered by the inclusion of GO due to the low concentration of the material used. However, the concentration was sufficient to increase the specific capacitance of the nanocomposite by 20 times compared to that of pure PPy, reflecting a synergistic effect between PPy and GR, as analysed by a three-electrode electrochemical cell. The electrochemical performance of the nanocomposites was affected by varying the deposition parameters such as concentrations of pyrrole and GO, scan rate, deposition time and deposition potential
Influence of the polymeric coating thickness on the electrochemical performance of Carbon Fiber/PAni composites
Supercapacitive behavior of electrosynthesized marygold-like structured nickel doped iron hydroxide thin film
Electromagnetic reflection, shielding and conductivity of polypyrrole thin film electropolymerized in P-Tulensulfonic acid
Studies on electrosynthesized leucoemeraldine, emeraldine and pernigraniline forms of polyaniline films and their supercapacitive behavior
Porting Android Oreo onto Imx6 Processor based Media Accelerated Graphics Innovation Kit with driving an SD card
Nowadays for the embedded devices use of android operating system has become current emerging trend in the market. The most widely used embedded device in industries which built with android OS is mobile phone. The advantage of using android OS compared to other OS is that, it is an open source and responds quickly to functional changes. It is becoming default OS for devices which requires the multimedia support. Porting of android onto ARM processor based platform is very necessary in order to bring the effectiveness of ARM and capability of android onto a product. The proposed work is to port android 8.0(oreo) onto iMX6 processor based Media Accelerated Graphics Innovation Kit (MAIK-II) and testing sd card interface for read or write process.</jats:p
