✍️ 🧑‍🦱 💚 Autor:innen verdienen bei uns doppelt. Dank euch haben sie so schon 445.757 € mehr verdient. → Mehr erfahren 💪 📚 🙏

Solution-Based Single Walled Carbon Nanotubes for Hybrid Solar Cells

Solution-Based Single Walled Carbon Nanotubes for Hybrid Solar Cells

von Francesca Bottacchi
Softcover - 9783639701081
47,90 €
  • Versandkostenfrei
Auf meine Merkliste
  • Hinweis: Print on Demand. Lieferbar in 2 Tagen.
  • Lieferzeit nach Versand: ca. 1-2 Tage
  • inkl. MwSt. & Versandkosten (innerhalb Deutschlands)

Autorenfreundlich Bücher kaufen?!

Beschreibung

The aim of this work is to study the optical and electronic properties of the heterojunction interface between a layer of polymer-sorted semiconducting (6,5) single walled carbon nanotubes (SWNTs) and a layer of titanium dioxide (TiO2). In order to increase the effective interface area for SWNT exciton dissociation, different oxide morphologies have been implemented. On the other hand, in order to address the issue of the electronic coupling at the hybrid interface, solar cells have also been functionalized with a small molecule. This book starts with a theoretical background on the structural and optoelectronic properties of carbon nanotubes as well as on the working principle of different kinds of solar cells. Then, all the procedures and the experimental techniques used for the material processing, the fabrication and the characterization of the SWNT-based hybrid solar cell are described. Finally, the experimental results of the polymer-sorted semiconducting (6,5) SWNT-based hybrid solar cell are discussed, together with some future optimizations that could improve the device performances.

From the Theory behind SWNTs and Photovoltaic Devices to Experimental Results on Solution-Based SWNTs Hybrid Solar Cells

Details

Verlag Scholars' Press
Ersterscheinung 01. April 2015
Maße 22 cm x 15 cm x 0.7 cm
Gewicht 173 Gramm
Format Softcover
ISBN-13 9783639701081
Seiten 104

Schlagwörter

Widerrufsantrag einreichen

Füllen Sie das folgende Formular aus, um Ihren Widerrufsantrag einzureichen.