Doktorské studium

Studijní obor Fyzika plazmatu

Název práce: Imobilizace dopantů v organických vodičích pomocí plazmatu generovaného za atmosferického tlaku a elektrónového svazku

Školitel: doc. RNDr. Antonín Brablec, CSc.

Oficiální zadání:
Till now conductive polymers enjoy few large-scale applications due to their poor processability manufacturing cost, etc. They are, however, rapidly gaining attraction in new applications with increasingly processable materials with better electrical and physical properties and lower costs. One of the problem to be solved is the doping stability: Typical conductive polymers must be "doped" to produce high conductivity. However. typically the dopant in a doping treatment to a conductive polymer is volatile, and, thus, it cannot provide environmental stability to the conductive polymer. The proposed work is aimed to enhance stability of the doping treatment using plasma and e-beam assisted techniques. The research work will be performed in close collaboration with the Materials Research Centres at the BUT Faculty of Chemistry.
Poznámka:

Literature:
1. Colin Pratt: “Conductive Polymers” , http://homepage.ntlworld.com/colin.pratt/cpoly.pdf
2. Hong; Yong Cheol ; et al. “Solid dopands for conductive polymers, method and apparatus for preparing the same using plasma teratment, and solid doping method of conductive polymers” US Pat. Appl 20100270517 (2010)
3. CHOI; Jaeyoung ; et al.:”Carbon nanotube N-doping material, carbon nanotube N-doping method and device using the same” US Pat. Appl 20100140561
4. G. Kaune, P. Müller-Buschbaum:” Gradient-doping of a conductive polymer film with a layer-by-layer approach” physica status solidi (RRL) - Rapid Research Letters Volume 4, Issue 1-2, pages 52-54, February 2010
5. Stephen R. Forrest:” The path to ubiquitous and low-cost organic electronic appliances on plastic” NATURE, VOL 428 , 29 APRIL 2004, http://www.nature.com/nature


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