• DocumentCode
    3266228
  • Title

    Nanostructured sensing devices controlled by ultra-flexible polysilicon readout circuits

  • Author

    Maiolo, Luca ; Maita, Francesco ; Minotti, Antonio ; Pecora, Alessandro ; Fortunato, Guglielmo ; Ferrone, Andrea ; Mirabella, Salvo ; Strano, Vicky

  • Author_Institution
    Ist. per la Microelettronica e i Microsistemi, Consiglio Naz. delle Ric., Rome, Italy
  • fYear
    2015
  • fDate
    10-13 June 2015
  • Firstpage
    1770
  • Lastpage
    1773
  • Abstract
    Today ultra-flexible electronic devices can be successfully embedded in smart clothes, integrated in transparent displays, hidden in tubular structures to increase the numbers of sensors in an urban space or in a specific environment, thus enhancing the interaction of a person and maximizing the shared amount of available information. Coupling this technology with nanostructures based sensing devices is a further step to revolutionize the idea of distributed smart objects. Polysilicon based materials on plastic is a mature technology to fabricate electronic read-out circuits suitable to manage and control the signals coming from sensors of different nature, conceiving new applications and wearable solutions. Moreover, the possibility of directly integrating active devices together with sensors reduces issues related to signal to noise ratio, providing a local preamplification.
  • Keywords
    distributed sensors; intelligent sensors; nanofabrication; nanosensors; nanostructured materials; plastics; preamplifiers; readout electronics; silicon; distributed smart object; local preamplification; nanofabrication; nanostructured sensing device; plastic; polysilicon based material; signal to noise ratio; smart clothes; transparent display; tubular structure; ultraflexible electronic device; ultraflexible polysilicon electronic readout circuit; II-VI semiconductor materials; Nanostructures; Substrates; Temperature sensors; Thin film transistors; Zinc oxide; Ultra-flexible devices; nanostructured sensors; pH sensing; polysilicon TFTs;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Environment and Electrical Engineering (EEEIC), 2015 IEEE 15th International Conference on
  • Conference_Location
    Rome
  • Print_ISBN
    978-1-4799-7992-9
  • Type

    conf

  • DOI
    10.1109/EEEIC.2015.7165441
  • Filename
    7165441