Ultrathin organic transistors for chemical sensing

Ultrathin cobalt phthalocyanine transistors of 4 ML have been fabricated for chemical sensing. Compared to 50 ML devices, the ultrathin transistors show faster response times, higher base line stabilities, and sensitivity enhancements of 1.5-20 for the five analytes tested. The enhanced response for...

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Veröffentlicht in:Applied physics letters 2007-06, Vol.90 (26), p.263506-263506-3
Hauptverfasser: Yang, Richard D., Gredig, T., Colesniuc, Corneliu N., Park, Jeongwon, Schuller, Ivan K., Trogler, William C., Kummel, Andrew C.
Format: Artikel
Sprache:eng
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Zusammenfassung:Ultrathin cobalt phthalocyanine transistors of 4 ML have been fabricated for chemical sensing. Compared to 50 ML devices, the ultrathin transistors show faster response times, higher base line stabilities, and sensitivity enhancements of 1.5-20 for the five analytes tested. The enhanced response for the ultrathin transistors provides insight into the device physics. The absorption of analytes changes the surface doping level and trap energies. The changes in surface trap energies perturb the charge transport properties of the ultrathin devices, thereby, making these devices more sensitive.
ISSN:0003-6951
1077-3118
DOI:10.1063/1.2749092