In this work, we present a study on the effect of thiol-capped AuNPs of various sizesin an organic solar cell.AuNPs have been obtained by laser ablation in liquid solution[2], have been functionalized both with 2-naphthalenethiol and alkanethiol having different length. In addition to bulk heterojunction structures with optimized interpenetrating network of donors and acceptor domains, we have chosen to study planar heterojunctions (PHJs), consisting of three component thin films realized by sequential deposition of P3HT, AuNPs and PCBM from orthogonal solvents.

Sartorio, C., Cataldo, S., Scaramuzza, S., Vetri, V., Scopelliti, M., Amendola, V., et al. (2015). Enhanced Efficiency of Organic Solar Cells by Thiol-capped Au-Nanoparticles. In Italian National Conference on Condensed Matter Physics - BOOK OF ABSTRACT.

Enhanced Efficiency of Organic Solar Cells by Thiol-capped Au-Nanoparticles

C. Sartorio;S. Cataldo;V. Vetri;M. Scopelliti;M. Leone;B. Pignataro
2015-01-01

Abstract

In this work, we present a study on the effect of thiol-capped AuNPs of various sizesin an organic solar cell.AuNPs have been obtained by laser ablation in liquid solution[2], have been functionalized both with 2-naphthalenethiol and alkanethiol having different length. In addition to bulk heterojunction structures with optimized interpenetrating network of donors and acceptor domains, we have chosen to study planar heterojunctions (PHJs), consisting of three component thin films realized by sequential deposition of P3HT, AuNPs and PCBM from orthogonal solvents.
2015
Sartorio, C., Cataldo, S., Scaramuzza, S., Vetri, V., Scopelliti, M., Amendola, V., et al. (2015). Enhanced Efficiency of Organic Solar Cells by Thiol-capped Au-Nanoparticles. In Italian National Conference on Condensed Matter Physics - BOOK OF ABSTRACT.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10447/245892
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