Probing Ternary Solvent Effect in High Voc Polymer Solar Cells Using Advanced AFM Techniques
Author(s) -
Chao Li,
Yi Ding,
Mikhael Soliman,
J. T. De Lorenzo,
Nitesh Dhasmana,
Panit Chantharasupawong,
Anton V. Ievlev,
Andre J. Gesquiere,
Laurene Tetard,
Jayan Thomas
Publication year - 2016
Publication title -
acs applied materials and interfaces
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.535
H-Index - 228
eISSN - 1944-8252
pISSN - 1944-8244
DOI - 10.1021/acsami.5b12260
Subject(s) - materials science , ternary operation , polymer , solvent , chemical engineering , nanotechnology , atomic force microscopy , organic chemistry , composite material , computer science , engineering , programming language , chemistry
This work describes a simple method to develop a high V(oc) low band gap PSCs. In addition, two new atomic force microscopy (AFM)-based nanoscale characterization techniques to study the surface morphology and physical properties of the structured active layer are introduced. With the help of ternary solvent processing of the active layer and C60 buffer layer, a bulk heterojunction PSC with V(oc) more than 0.9 V and conversion efficiency 7.5% is developed. In order to understand the fundamental properties of the materials ruling the performance of the PSCs tested, AFM-based nanoscale characterization techniques including Pulsed-Force-Mode AFM (PFM-AFM) and Mode-Synthesizing AFM (MSAFM) are introduced. Interestingly, MSAFM exhibits high sensitivity for direct visualization of the donor-acceptor phases in the active layer of the PSCs. Finally, conductive-AFM (cAFM) studies reveal local variations in conductivity in the donor and acceptor phases as well as a significant increase in photocurrent in the PTB7:ICBA sample obtained with the ternary solvent processing.
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