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Cross-Linking of Doped Organic Semiconductor Interlayers for Organic Solar Cells: Potential and Challenges
by
Österbacka, Ronald
, Wilken, Sebastian
, Zhang, Yadong
, Barlow, Stephen
, Ahläng, Christian
, Nyman, Mathias
, Marder, Seth R
, Dahlström, Staffan
in
Charge efficiency
/ Charge transport
/ Commercialization
/ Crosslinking
/ Diffusion layers
/ Dopants
/ Electronic devices
/ Interlayers
/ Organic semiconductors
/ Photovoltaic cells
/ Solar cells
2021
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Cross-Linking of Doped Organic Semiconductor Interlayers for Organic Solar Cells: Potential and Challenges
by
Österbacka, Ronald
, Wilken, Sebastian
, Zhang, Yadong
, Barlow, Stephen
, Ahläng, Christian
, Nyman, Mathias
, Marder, Seth R
, Dahlström, Staffan
in
Charge efficiency
/ Charge transport
/ Commercialization
/ Crosslinking
/ Diffusion layers
/ Dopants
/ Electronic devices
/ Interlayers
/ Organic semiconductors
/ Photovoltaic cells
/ Solar cells
2021
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Cross-Linking of Doped Organic Semiconductor Interlayers for Organic Solar Cells: Potential and Challenges
by
Österbacka, Ronald
, Wilken, Sebastian
, Zhang, Yadong
, Barlow, Stephen
, Ahläng, Christian
, Nyman, Mathias
, Marder, Seth R
, Dahlström, Staffan
in
Charge efficiency
/ Charge transport
/ Commercialization
/ Crosslinking
/ Diffusion layers
/ Dopants
/ Electronic devices
/ Interlayers
/ Organic semiconductors
/ Photovoltaic cells
/ Solar cells
2021
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Cross-Linking of Doped Organic Semiconductor Interlayers for Organic Solar Cells: Potential and Challenges
Paper
Cross-Linking of Doped Organic Semiconductor Interlayers for Organic Solar Cells: Potential and Challenges
2021
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Overview
Solution-processable interlayers are an important building block for the commercialization of organic electronic devices such as organic solar cells. Here, the potential of cross-linking to provide an insoluble, stable and versatile charge transport layer based on soluble organic semiconductors is studied. For this purpose, a photo-reactive tris-azide cross-linker is synthesized. The capability of the small molecular cross-linker is illustrated by applying it to a p-doped polymer used as a hole transport layer in organic solar cells. High cross-linking efficiency and excellent charge extraction properties of the cross-linked doped hole transport layer are demonstrated. However, at high doping levels in the interlayer, the solar cell efficiency is found to deteriorate. Based on charge extraction measurements and numerical device simulations, it is shown that this is due to diffusion of dopants into the active layer of the solar cell. Thus, in the development of future cross-linker materials, care must be taken to ensure that they immobilize not only the host, but also the dopants.
Publisher
Cornell University Library, arXiv.org
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