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What Currently Limits Charge Carrier Mobility in Crystals of Molecular Semiconductors?
Charge carrier mobility is a central property that characterizes the performances of organic semiconductors and is mostly measured in field‐effect transistors. High mobility values are sought by many research teams. This article, that provides an overview of best performing molecular semiconductors...
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Published in: | Israel journal of chemistry 2014-06, Vol.54 (5-6), p.595-620 |
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Language: | English |
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container_end_page | 620 |
container_issue | 5-6 |
container_start_page | 595 |
container_title | Israel journal of chemistry |
container_volume | 54 |
creator | Schweicher, Guillaume Olivier, Yoann Lemaur, Vincent Geerts, Yves Henri |
description | Charge carrier mobility is a central property that characterizes the performances of organic semiconductors and is mostly measured in field‐effect transistors. High mobility values are sought by many research teams. This article, that provides an overview of best performing molecular semiconductors is constructed on the question: What currently limits charge carrier mobility in crystals of molecular semiconductors? With this in mind, we confront, in a critical way, the current theoretical understanding to the most salient experimental results with the hope to reach a deeper understanding based on first principles and order of magnitudes of the main physical parameters. |
doi_str_mv | 10.1002/ijch.201400047 |
format | article |
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ispartof | Israel journal of chemistry, 2014-06, Vol.54 (5-6), p.595-620 |
issn | 0021-2148 1869-5868 |
language | eng |
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source | Wiley-Blackwell Read & Publish Collection |
subjects | charge carrier mobility Charge carriers charge transfer Construction Crystals electrochemistry Field effect transistors Organic semiconductors Semiconductor devices Semiconductors structureactivity relationships |
title | What Currently Limits Charge Carrier Mobility in Crystals of Molecular Semiconductors? |
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