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Dive into the research topics where Pälvi Apilo is active.

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Featured researches published by Pälvi Apilo.


Sensors | 2018

An All-Organic Flexible Visible Light Communication System

César Vega-Colado; B. Arredondo; Juan Carlos Torres; Eduardo López-Fraguas; Ricardo Vergaz; Diego Martín-Martín; Gonzalo del Pozo; Beatriz Romero; Pälvi Apilo; Xabier Quintana; Morten Andreas Geday; Cristina de Dios; José Manuel Sánchez-Pena

Visible light communication systems can be used in a wide variety of applications, from driving to home automation. The use of wearables can increase the potential applications in indoor systems to send and receive specific and customized information. We have designed and developed a fully organic and flexible Visible Light Communication system using a flexible OLED, a flexible P3HT:PCBM-based organic photodiode (OPD) and flexible PCBs for the emitter and receiver conditioning circuits. We have fabricated and characterized the I-V curve, modulation response and impedance of the flexible OPD. As emitter we have used a commercial flexible organic luminaire with dimensions 99 × 99 × 0.88 mm, and we have characterized its modulation response. All the devices show frequency responses that allow operation over 40 kHz, thus enabling the transmission of high quality audio. Finally, we integrated the emitter and receiver components and its electronic drivers, to build an all-organic flexible VLC system capable of transmitting an audio file in real-time, as a proof of concept of the indoor capabilities of such a system.


ACS Applied Energy Materials | 2018

Effect of the Electron Transport Layer on the Interfacial Energy Barriers and Lifetime of R2R Printed Organic Solar Cell Modules

Marja Vilkman; Kaisa‐Leena Väisänen; Pälvi Apilo; Riccardo Po; Marja Välimäki; Mari Ylikunnari; Andrea Bernardi; Tapio Pernu; Gianni Corso; Jani Seitsonen; Santtu Heinilehto; Janne Ruokolainen; Jukka Hast

Understanding the phenomena at interfaces is crucial for producing efficient and stable flexible organic solar cell modules. Minimized energy barriers enable efficient charge transfer, and good adhesion allows mechanical and environmental stability and thus increased lifetime. We utilize here the inverted organic solar module stack and standard photoactive materials (a blend of poly(3-hexylthiophene) and [6,6]-phenyl C61 butyric acid methyl ester) to study the interfaces in a pilot scale large-area roll-to-roll (R2R) process. The results show that the adhesion and work function of the zinc oxide nanoparticle based electron transport layer can be controlled in the R2R process, which allows optimization of performance and lifetime. Plasma treatment of zinc oxide (ZnO) nanoparticles and encapsulation-induced oxygen trapping will increase the absolute value of the ZnO work function, resulting in energy barriers and an S-shaped IV curve. However, light soaking will decrease the zinc oxide work function close to the original value and the S-shape can be recovered, leading to power conversion efficiencies above 3%. We present also an electrical simulation, which supports the results. Finally, we study the effect of plasma treatment in more detail and show that we can effectively remove the organic ligands around the ZnO nanoparticles from the printed layer in a R2R process, resulting in increased adhesion. This postprinting plasma treatment increases the lifetime of the R2R printed modules significantly with modules retaining 80% of their efficiency for ∼3000 h in accelerated conditions. Without plasma treatment, this efficiency level is reached in less than 1000 h.


Progress in Photovoltaics | 2015

Roll‐to‐roll gravure printing of organic photovoltaic modules—insulation of processing defects by an interfacial layer

Pälvi Apilo; Jussi Hiltunen; Marja Välimäki; Santtu Heinilehto; Rafal Sliz; Jukka Hast


Nanoscale | 2015

R2R-printed inverted OPV modules – towards arbitrary patterned designs

Marja Välimäki; Pälvi Apilo; Riccardo Po; Elina Jansson; Andrea Bernardi; Mari Ylikunnari; Marja Vilkman; Gianni Corso; J. Puustinen; J. Tuominen; Jukka Hast


Energy technology | 2015

Gravure‐Printed ZnO in Fully Roll‐to‐Roll Printed Inverted Organic Solar Cells: Optimization of Adhesion and Performance

Marja Vilkman; Pälvi Apilo; Marja Välimäki; Mari Ylikunnari; Andrea Bernardi; Riccardo Po; Gianni Corso; Jukka Hast


SID Symposium Digest of Technical Papers | 2013

18.1: Invited Paper: Roll‐to‐Roll Manufacturing of Printed OLEDs

Jukka Hast; Markus Tuomikoski; Riikka Suhonen; Kaisa‐Leena Väisänen; Marja Välimäki; Tiina Maaninen; Pälvi Apilo; Ari Alastalo; Arto Maanineny


Solar Energy Materials and Solar Cells | 2015

Determining the photocurrent of individual cells within an organic solar module by LBIC and the filtering approach: Experiments and simulations

Jens Reinhardt; Pälvi Apilo; Birger Zimmermann; Sanna Rousu; Uli Würfel


Solar RRL | 2018

Fully Roll‐to‐Roll Printed P3HT/Indene‐C60‐Bisadduct Modules with High Open‐Circuit Voltage and Efficiency

Pälvi Apilo; Marja Välimäki; Riccardo Po; Kaisa‐Leena Väisänen; Henning Richter; Mari Ylikunnari; Marja Vilkman; Andrea Bernardi; Gianni Corso; Harald Hoppe; Roland Roesch; Rico Meitzner; Ulrich S. Schubert; Jukka Hast


Journal of Materials Research | 2018

Stability of organic solar cells with PCDTBT donor polymer: An interlaboratory study – ERRATUM

Laura Ciammaruchi; Ricardo Oliveira; Ana Charas; Tulus; Elizabeth von Hauff; Giuseppina Polino; Francesca Brunetti; Rickard Hansson; Ellen Moons; Miron Krassas; George Kakavelakis; Emmanuel Kymakis; José G. Sánchez; Josep Ferré-Borrull; L.F. Marsal; Simon Züfle; Daniel Fluhr; Roland Roesch; Tobias Faber; Ulrich S. Schubert; Harald Hoppe; Klaas Bakker; Sjoerd C. Veenstra; Gloria Zanotti; Eugene A. Katz; Pälvi Apilo; B. Romero; Tülay Aslı Tumay; Elif Alturk Parlak; Luciano Mule Stagno


Energy technology | 2015

Inside Back Cover: Gravure-Printed ZnO in Fully Roll-to-Roll Printed Inverted Organic Solar Cells: Optimization of Adhesion and Performance (Energy Technol. 4/2015)

Marja Vilkman; Pälvi Apilo; Marja Välimäki; Mari Ylikunnari; Andrea Bernardi; Riccardo Po; Gianni Corso; Jukka Hast

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Jukka Hast

VTT Technical Research Centre of Finland

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Marja Välimäki

VTT Technical Research Centre of Finland

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Mari Ylikunnari

VTT Technical Research Centre of Finland

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Marja Vilkman

VTT Technical Research Centre of Finland

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Kaisa‐Leena Väisänen

VTT Technical Research Centre of Finland

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