000063592 001__ 63592
000063592 005__ 20171221155140.0
000063592 037__ $$aTAZ-TFM-2017-1337
000063592 041__ $$aeng
000063592 1001_ $$aYurusen, Ismail Cem
000063592 24200 $$aCarbonaceous platforms for the fabrication of green molecular electronic devices
000063592 24500 $$aUso de electrodos basados en el carbono para la fabricación de dispositivos electrónicos
000063592 260__ $$aZaragoza$$bUniversidad de Zaragoza$$c2017
000063592 506__ $$aby-nc-sa$$bCreative Commons$$c3.0$$uhttp://creativecommons.org/licenses/by-nc-sa/3.0/
000063592 520__ $$aThe research on the development of electronic devices is growing as fast as ever. As new challenges arise with the continuous miniaturisation of electronic components, nanostructured and carbon-based materials have been become very promising for future developments and products. In this project, an all-carbon molecular electronic device, which is completely free of metals, is reported. A Langmuir film of graphene oxide (GO) was fabricated and characterised by using a Brewster angle microscope (BAM). Then, transferences of a GO  Langmuir-Blodgett (LB) film onto mica substrate for different transference conditions were carried out. Morphology of the samples were characterised by using an atomic force microscope (AFM). Once the optimum transference conditions of GO LB film were determined, electrografting processes of Oligo(Phenylene Ethynylene) (OPE) derivatives onto highly oriented pyrolytic graphite (HOPG) substrate were carried out. After monolayers of OPE derivatives onto HOPG were confirmed by using various characterisation techniques such as Raman spectroscopy, AFM and cyclic voltammetry (CV), transferences of GO LB film onto modified HOPG substrates were carried out. Future work to achieve all-carbon molecular electronic devices is also explained.
000063592 521__ $$aMáster en Materiales Nanoestructurados para Aplicaciones Nanotecnológicas (Nanostructured Materials for Nanotechnology Applications)
000063592 540__ $$aDerechos regulados por licencia Creative Commons
000063592 700__ $$aMartín Solans, Santiago$$edir.
000063592 700__ $$aCea Mingueza, Pilar$$edir.
000063592 7102_ $$aUniversidad de Zaragoza$$bQuímica Física$$cQuímica Física
000063592 8560_ $$f742730@celes.unizar.es
000063592 8564_ $$s3483811$$uhttps://zaguan.unizar.es/record/63592/files/TAZ-TFM-2017-1337.pdf$$yMemoria (eng)
000063592 909CO $$ooai:zaguan.unizar.es:63592$$pdriver$$ptrabajos-fin-master
000063592 950__ $$a
000063592 951__ $$adeposita:2017-12-21
000063592 980__ $$aTAZ$$bTFM$$cCIEN