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A Static Model for Electrolyte-Gated Organic Field-Effect Transistors
Linköping University, The Institute of Technology. Linköping University, Department of Electrical Engineering, Information Coding.
Linköping University, Department of Science and Technology. Linköping University, The Institute of Technology.
Linköping University, Department of Science and Technology. Linköping University, The Institute of Technology.
Linköping University, The Institute of Technology. Linköping University, Department of Science and Technology, Physics and Electronics.ORCID iD: 0000-0001-8845-6296
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2011 (English)In: IEEE Transactions on Electron Devices, ISSN 0018-9383, E-ISSN 1557-9646, Vol. 58, no 10, 3574-3582 p.Article in journal (Refereed) Published
Abstract [en]

We present a dc model to simulate the static performance of electrolyte-gated organic field-effect transistors. The channel current is expressed as charge drift transport under electric field. The charges accumulated in the channel are considered being contributed fromvoltage-dependent electric-doublelayer capacitance. The voltage-dependent contact effect and short-channel effect are also taken into account in this model. A straightforward and efficient methodology is presented to extract the model parameters. The versatility of this model is discussed as well. The model is verified by the good agreement between simulation and experimental data.

Place, publisher, year, edition, pages
Institute of Electrical and Electronics Engineers (IEEE) , 2011. Vol. 58, no 10, 3574-3582 p.
Keyword [en]
Electric-double-layer capacitance, field-effect transistors, parameter extraction, polymer electrolyte, static model
National Category
Engineering and Technology
Identifiers
URN: urn:nbn:se:liu:diva-71549DOI: 10.1109/TED.2011.2162648ISI: 000295100300045OAI: oai:DiVA.org:liu-71549DiVA: diva2:450533
Note

Funding Agencies|Center of Organic Electronics, Linkoping University, Sweden||Strategic Research Foundation SSF||

Available from: 2011-10-21 Created: 2011-10-21 Last updated: 2017-12-08

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