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Organic rectifying junctions fabricated by ionic coupling

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Organic rectifying junctions fabricated by ionic coupling. / Ashwell, Geoff; Ewington, Johnathan; Robinson, Benjamin.
In: Chemical Communications, No. 6, 2006, p. 618-620.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

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Ashwell G, Ewington J, Robinson B. Organic rectifying junctions fabricated by ionic coupling. Chemical Communications. 2006;(6):618-620. doi: 10.1039/B515897D

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Ashwell, Geoff ; Ewington, Johnathan ; Robinson, Benjamin. / Organic rectifying junctions fabricated by ionic coupling. In: Chemical Communications. 2006 ; No. 6. pp. 618-620.

Bibtex

@article{209e8a3ff8dc4ef8b05b60b7b197eb9d,
title = "Organic rectifying junctions fabricated by ionic coupling",
abstract = "Ionically-assembled structures that comprise discrete layers of cationic acceptors (4,4′-bipyridinium) and anionic donors (copper phthalocyanine-3,4′,4″,4-tetrasulfonate) exhibit asymmetric current–voltage (I–V) characteristics with high rectification ratios of 60–100 at ±1 V.",
author = "Geoff Ashwell and Johnathan Ewington and Benjamin Robinson",
year = "2006",
doi = "10.1039/B515897D",
language = "English",
pages = "618--620",
journal = "Chemical Communications",
issn = "1359-7345",
publisher = "Royal Society of Chemistry",
number = "6",

}

RIS

TY - JOUR

T1 - Organic rectifying junctions fabricated by ionic coupling

AU - Ashwell, Geoff

AU - Ewington, Johnathan

AU - Robinson, Benjamin

PY - 2006

Y1 - 2006

N2 - Ionically-assembled structures that comprise discrete layers of cationic acceptors (4,4′-bipyridinium) and anionic donors (copper phthalocyanine-3,4′,4″,4-tetrasulfonate) exhibit asymmetric current–voltage (I–V) characteristics with high rectification ratios of 60–100 at ±1 V.

AB - Ionically-assembled structures that comprise discrete layers of cationic acceptors (4,4′-bipyridinium) and anionic donors (copper phthalocyanine-3,4′,4″,4-tetrasulfonate) exhibit asymmetric current–voltage (I–V) characteristics with high rectification ratios of 60–100 at ±1 V.

U2 - 10.1039/B515897D

DO - 10.1039/B515897D

M3 - Journal article

SP - 618

EP - 620

JO - Chemical Communications

JF - Chemical Communications

SN - 1359-7345

IS - 6

ER -