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High performance low voltage organic field effect transistors on plastic substrate for amplifier circuits

  • G.J.R. Houin
  • , F. Duez
  • , L. Garcia
  • , E. Cantatore
  • , F. Torricelli
  • , L. Hirsch
  • , D. Belot
  • , C. Pellet
  • , M. Abbas

Onderzoeksoutput: Hoofdstuk in Boek/Rapport/CongresprocedureConferentiebijdrageAcademicpeer review

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Samenvatting

The high performance air stable organic semiconductor small molecule dinaphtho[2,3-b:2',3'-f]thieno[3,2-b]thiophene (DNTT) was chosen as active layer for field effect transistors built to realize flexible amplifier circuits. Initial device on rigid Si/SiO2 substrate showed appreciable performance with hysteresis-free characteristics. A number of approaches were applied to simplify the process, improve device performance and decrease the operating voltage: they include an oxide interfacial layer to decrease contact resistance; a polymer passivation layer to optimize semiconductor/dielectric interface and an anodized high-k oxide as dielectric layer for low voltage operation. The devices fabricated on plastic substrate yielded excellent electrical characteristics, showing mobility of 1.6 cm2/Vs, lack of hysteresis, operation below 5 V and on/off current ratio above 105. An OFET model based on variable ranging hopping theory was used to extract the relevant parameters from the transfer and output characteristics, which enabled us to simulate our devices achieving reasonable agreement with the measurements
Originele taal-2Engels
TitelOrganic Field-Effect Transistors XV, 28 August 2016, San Diego, California
Plaats van productieBellingham
UitgeverijSPIE
Pagina's1-6
DOI's
StatusGepubliceerd - 23 sep. 2016
EvenementSPIE Organic Photonics+ Electronics, 2016 - San Diego, Verenigde Staten van Amerika
Duur: 28 aug. 20161 sep. 2016

Publicatie series

NaamProceedings of SPIE
Volume9943
ISSN van geprinte versie0277-786X

Congres

CongresSPIE Organic Photonics+ Electronics, 2016
Land/RegioVerenigde Staten van Amerika
StadSan Diego
Periode28/08/161/09/16

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