4.6 Article

Langmuir monolayer of organoalkoxysilane for vitamin B-12-modified electrode

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PHYSICAL CHEMISTRY CHEMICAL PHYSICS
卷 3, 期 16, 页码 3442-3446

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ROYAL SOC CHEMISTRY
DOI: 10.1039/b100974p

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In order to develop a novel type of vitamin B-12-functionalizcd electrode, the monolayer properties of the vitamin B-12 mimics, which have a core structurally identical with the naturally occurring vitamin B-12 and seven ester chains on the outside, have been investigated as a mixed monolayer with an organosilane amphiphile. Vitamin B-12 derivatives having seven C-8 chains were stably incorporated into the matrix organosilane monolayer. while the short C-3 chain derivatives were easily squeezed out from the matrix monolayer upon compression. Analyses of the molecular areas revealed that the long chain derivatives had a face-on orientation in the matrix monolayer. The mixed monolayers of the vitamin B-12 with the long chains and the organosilane amphiphile were transferred as an X-type LB film on a quartz plate that showed reasonable UV absorbance. The monolayer containing the vitamin B-12 derivative was similarly immobilized on an ITO electrode. A cyclic voltammetric measurement of this electrode in aqueous solution showed a Co(II)/Co(I) redox couple at -0.65 V vs. Ag/AgCl which is in good agreement with the corresponding value of the vitamin B-12 derivative dissolved in methanol. It indicates that this modified electrode can be used as a reactive electrode with a vitamin B-12 function.

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