Electron-conducting molecular preparations

Chemistry: electrical and wave energy – Apparatus – Electrolytic

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Details

204400, 204403, 204415, 252500, 429192, 429198, 429213, 429249, C25B 1300, H01B 100, G01N 2726

Patent

active

055565247

ABSTRACT:
The invention relates to an electron-conducting molecular preparation designed to act as a conductor by receiving an electron at its one end and conducting the electron along its molecular structure to its other end. The molecule in the preparation has the following general formula (I): ##STR1## wherein n represents an integer from 1 to 12

REFERENCES:
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Takahashi, K. J. Chem. Soc. Chem. Commun. (8), 620-2 (1992).
Nakajima, R et al. Bull. Chem. Soc. Jpn, 63(2), 636-7 (1990).
Takahashi, et al., One-Pot Synthesis and Redox Properties of Conjugation-Extended 4,4'-Bipyridines and Related Compounds. New Ligands Consisting of a Heterocyclic Three-Ring Assembly, The Chemical Society of Japan, Bull. Chem. Soc., vol. 65 (1992) pp. 1855-1859 no month available.
Nakajima, et al., Synthesis and Spectral Properties of 5,5'-Di(4-pyridyl)-2,2'-bithienyl as a New Fluorescent Compound, The Chemical Society of Japan, Bull. Chem. Soc., vol. 63, No. 2, (1990), pp. 636-637 no month available.
Sariciftci, et al., In Situ Spectroscopic Studies on Viologen Functionalized Poly(3-Alkylthiophenes) During Electrochemical Redox Processes, Springer Series in Solid-State Sciences, vol. 102 (1992), pp. 176-179 no month available.
Chemical Abstracts, vol. 118 (1993), p. 8, Item 118:22756h, Sariciftci, et al., In-situ spectroscopic studies on viologen functionalized poly(3-alkylthiophenes) during electrochemical redox processes. no month available.
Chemical Abstracts, vol. 115 (1991), p. 614, Item 115:192253x, Hillman, et al., Electroactive bilayers employing conducting polymers. Part III. Kinetic v.s. diffusional control of outer layer switching rate. no month available.
Chemical Abstracts, vol. 115 (1991), p. 614, Item 115:192256a, Hillman, et al., Electroactive bilayers employing conducting polymers. 2. Speciation by in situ spectroscopy. no month available.

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