Polymer solar cells are conventionally processed by coating a multicomponent mixture containing polymer, fullerene, solvent, and cosolvent. The photovoltaic performance strongly depends on the nanoscale morphology of the blend, which is largely determined by the precise nature of the solvent composition and drying conditions. Here, an alternative processing route is investigated in which the two active layer components are deposited sequentially via spin coating or doctor blading. Spin coating the fullerene from o-dichlorobenzene on top of the polymer provides virtually identical morphologies and photovoltaic performance. Using blade coating, the influence of the second-layer solvent for the fullerene derivative is investigated in further d...
Photovoltaic technology (PV) makes it possible to directly convert sunlight into electricity and it ...
In this study, we demonstrated the effective morphological control of polymer:fullerene blends using...
The device performance of photovoltaics with a polymer: fullerene bulk heterojunction (BHJ) structur...
Polymer solar cells are conventionally processed by coating a multicomponent mixture containing poly...
Doctor blading is suitable to roll-to-roll process with much little solution wasting and is less stu...
© 2015 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim. Design rules are presented for significantly ...
Unsustainable energy sources are running out and global warming is getting worse. Therefore the need...
The performance of solution processed polymer:fullerene thin film photovoltaic cells is largely dete...
The performance of solution processed polymer:fullerene thin film photovoltaic cells is largely dete...
The photoactive layer of organic solar cells consists of a nanoscale blend of electron-donating and ...
All-polymer and polymer/fullerene inverted solar cells were fabricated by spin-coating and roll-coat...
High‐performance polymer solar cells (PSCs) are typically fabricated by spin coating in inert atmosp...
Organic photovoltaics are a potential source for cheap renewable energy. However oneof the main limi...
The power conversion efficiencies of organic solar cells delicately depend on the morphology of the ...
*S Supporting Information ABSTRACT: The performance of solution processed poly-mer:fullerene thin fi...
Photovoltaic technology (PV) makes it possible to directly convert sunlight into electricity and it ...
In this study, we demonstrated the effective morphological control of polymer:fullerene blends using...
The device performance of photovoltaics with a polymer: fullerene bulk heterojunction (BHJ) structur...
Polymer solar cells are conventionally processed by coating a multicomponent mixture containing poly...
Doctor blading is suitable to roll-to-roll process with much little solution wasting and is less stu...
© 2015 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim. Design rules are presented for significantly ...
Unsustainable energy sources are running out and global warming is getting worse. Therefore the need...
The performance of solution processed polymer:fullerene thin film photovoltaic cells is largely dete...
The performance of solution processed polymer:fullerene thin film photovoltaic cells is largely dete...
The photoactive layer of organic solar cells consists of a nanoscale blend of electron-donating and ...
All-polymer and polymer/fullerene inverted solar cells were fabricated by spin-coating and roll-coat...
High‐performance polymer solar cells (PSCs) are typically fabricated by spin coating in inert atmosp...
Organic photovoltaics are a potential source for cheap renewable energy. However oneof the main limi...
The power conversion efficiencies of organic solar cells delicately depend on the morphology of the ...
*S Supporting Information ABSTRACT: The performance of solution processed poly-mer:fullerene thin fi...
Photovoltaic technology (PV) makes it possible to directly convert sunlight into electricity and it ...
In this study, we demonstrated the effective morphological control of polymer:fullerene blends using...
The device performance of photovoltaics with a polymer: fullerene bulk heterojunction (BHJ) structur...