• Title/Summary/Keyword: 자기조립단층막

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Electrocatalytic Oxidation of NADH at Electrodes of Self-assembled Monolayers Modified with Dopamine (도파민으로 수식된 SAMs 전극에서 NADH의 전기촉매에 의한 산화)

  • Cha, Seong-Keuck
    • Journal of the Korean Chemical Society
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    • v.48 no.2
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    • pp.151-155
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    • 2004
  • The self-assembled mololayers(SAMs)were prepared with cysteine(cys) and subsequently coupled with dopamine(dopa) containing quinone functionality on the gold modified electrodes. The SAMs annealed in ethanol for 6 hours gave a better shaped cyclic voltammogram which had a 0.28 V of formal potential and same redox potential in 0.1M phosphate buffer(pH=7.10). The electrodes were employed to determine concentration of HADH with the result that calibration curve exhibited an excellent correlation(${\geq}$ 0.993) for the concentrations ranging up to 5.0${\times}10^{-4}$ M.

Electrocatalytic Oxidation of NADH at the Modified Graphite Electrode Incorporating Gold Nano Particles (금 나노입자를 회합시킨 수식된 흑연전극으로 NADH의 전기촉매 산화반응)

  • Cha, Seong-Keuck;Han, Sung-Yub
    • Journal of the Korean Electrochemical Society
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    • v.10 no.1
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    • pp.1-6
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    • 2007
  • Mercaptopropionic acid(mpa) has been used to make self-assembled monolayer(SAMs) on the surface of graphite electrode incorporating gold nano particles, which are subsequently modified with dopamine(dopa). Such modified electrodes haying types of Gr(Au)/mpa-dopa were employed in the electrocatalytic oxidation of NADH. The responses of such modified electrodes were studied in terms of electron transfer kinetics and reaction procedure in the reaction. The reaction of the surface immobilized dopa with NADH was studied using the rotating disk electrode technique and a value of $5.06{\times}10^5M^{-1}s^{-1}$ was obtained for the second-order rate constant in 0.1 M phosphate buffer(pH=7.0), which was a $EC_{cat}$ and kinetic controlled procedure. But, the modified electrodes were diffusion controlled reaction having $4.64{\times}10^{-4}cm^2s^{-1}$ of the coefficient within $10^{-3}s$ after starting the reaction.