Optimized Charge Transport in Molecular Semiconductors by Control of Fluid Dynamics and Crystallization in Meniscus‐Guided Coating (Adv. Funct. Mater. 2/2022)

Optimized Charge Transport In article number 2107976, Jasper J. Michels, Wojciech Pisula, Tomasz Marszalek, and co‐workers identify an optimal processing window for zone‐casting of a molecular semiconductor for organic fieldeffect transistors. Computational modelling of the fluid dynamics and the cr...

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Veröffentlicht in:Advanced functional materials 2022-01, Vol.32 (2), p.n/a
Hauptverfasser: Yildiz, Okan, Wang, Zuyuan, Borkowski, Michal, Fytas, George, Blom, Paul W. M., Michels, Jasper J., Pisula, Wojciech, Marszalek, Tomasz
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container_end_page n/a
container_issue 2
container_start_page
container_title Advanced functional materials
container_volume 32
creator Yildiz, Okan
Wang, Zuyuan
Borkowski, Michal
Fytas, George
Blom, Paul W. M.
Michels, Jasper J.
Pisula, Wojciech
Marszalek, Tomasz
description Optimized Charge Transport In article number 2107976, Jasper J. Michels, Wojciech Pisula, Tomasz Marszalek, and co‐workers identify an optimal processing window for zone‐casting of a molecular semiconductor for organic fieldeffect transistors. Computational modelling of the fluid dynamics and the crystallization explains the occurrence of three morphological subregimes: i) isotropic domain‐like, ii) unidirectional crystal stripes and iii) corrugated dendritic. Control of the semiconductor film morphology allows to optimize the in‐plane charge carrier transport.
doi_str_mv 10.1002/adfm.202270011
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source Wiley Online Library Journals Frontfile Complete
subjects Carrier transport
charge carrier transport
Charge transport
Crystallization
Crystals
Current carriers
field‐effect transistors
Fluid dynamics
Materials science
Morphology
Optimization
organic semiconductors
solution deposition
thin film morphology
Transistors
title Optimized Charge Transport in Molecular Semiconductors by Control of Fluid Dynamics and Crystallization in Meniscus‐Guided Coating (Adv. Funct. Mater. 2/2022)
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