Electrical bistability and negative differential resistance in diodes based on silver nanoparticle-poly(N-vinylcarbazole) composites

An electrically bistable device has been fabricated using nanocomposite films consisting of silver nanoparticles and a semiconducting polymer by a simple spin-coating method. The current-voltage characteristics of the as-fabricated devices exhibit an obvious electrical bistability and negative diffe...

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Veröffentlicht in:Journal of applied physics 2010-11, Vol.108 (9), p.094320-094320-5
Hauptverfasser: Tang, Aiwei, Qu, Shengchun, Hou, Yanbing, Teng, Feng, Tan, Hairen, Liu, Jie, Zhang, Xingwang, Wang, Yongsheng, Wang, Zhanguo
Format: Artikel
Sprache:eng
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Zusammenfassung:An electrically bistable device has been fabricated using nanocomposite films consisting of silver nanoparticles and a semiconducting polymer by a simple spin-coating method. The current-voltage characteristics of the as-fabricated devices exhibit an obvious electrical bistability and negative differential resistance effect. The current ratio between the high-conducting state and low-conducting state can reach more than 10 3 at room temperature. The electrical bistability of the device is attributed to the electric-filed-induced charge transfer between the silver nanoparticles and the polymer, and the negative differential resistance behavior is related to the charge trapping in the silver nanoparticles. The results open up a simple approach to fabricate high quality electrically bistable devices by doping metal nanoparticles into polymer.
ISSN:0021-8979
1089-7550
DOI:10.1063/1.3506708