Tuning the polarity of charge carriers using electron deficient thiophenes

Thiophene-1,1-dioxide (TDO) oligomers have fascinating electronic properties. We previously used thermopower measurements to show that a change in charge carrier from hole to electron occurs with increasing length of TDO oligomers when single-molecule junctions are formed between gold electrodes. In...

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Veröffentlicht in:Chemical science (Cambridge) 2017-04, Vol.8 (4), p.3254-3259
Hauptverfasser: Low, Jonathan Z, Capozzi, Brian, Cui, Jing, Wei, Sujun, Venkataraman, Latha, Campos, Luis M
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Sprache:eng
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Zusammenfassung:Thiophene-1,1-dioxide (TDO) oligomers have fascinating electronic properties. We previously used thermopower measurements to show that a change in charge carrier from hole to electron occurs with increasing length of TDO oligomers when single-molecule junctions are formed between gold electrodes. In this article, we show for the first time that the dominant conducting orbitals for thiophene/TDO oligomers of fixed length can be tuned by altering the strength of the electron acceptors incorporated into the backbone. We use the scanning tunneling microscope break-junction (STM-BJ) technique and apply a recently developed method to determine the dominant transport channel in single-molecule junctions formed with these systems. Through these measurements, we find that increasing the electron affinity of thiophene derivatives, within a family of pentamers, changes the polarity of the charge carriers systematically from holes to electrons, with some systems even showing mid-gap transport characteristics.
ISSN:2041-6520
2041-6539
DOI:10.1039/c6sc05283e