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Methylene blue-zirconium phosphate-cellulose acetate hybrid membrane film attached to a platinum electrode and its application in electrocatalytic oxidation of NADH

机译:亚甲基蓝-磷酸锆-醋酸纤维素杂化膜膜固定在铂电极上及其在NADH电催化氧化中的应用

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Highly dispersed zirconium phosphate was prepared by reacting a cellulose acetate membrane film containing zirconium oxide (ZrO_2 = 6.3 wt.%; 0.50 mmol g~(-1) of the zirconium atom per gram of the material) with phosphoric acid. The resulting membrane film was reacted with methylene blue (MB) by an ion exchange reaction. The amount of the dye bonded to the surface was 0.15 mmol g~(-1). High power decoupling magic angle spinning (HPDEC-MAS) ~(31)P NMR data indicated that Zr(HPO_4)_2 is the species present on the membrane surface. Cyclic voltammetry experiments of the MB dye adsorbed onto CelZrP, carried out on a thin membrane of the material fixed on a platinum disk electrode, were obtained. The midpoint potential (E_m) of CelZrP/MB was -0.15 V. The solution pH practically did not affect the midpoint potential of the adsorbed dye between pH 3 and 7. The modified electrode presented a reproducible response and it was chemically stable under various oxidation-reduction cycles. The electrode proved to be efficient to mediate the transfer for NADH oxidation. The apparent Michaelis-Menten constant, K_M~(app), for the modified electrode showed an efficient interaction between dye and NADH.
机译:通过使包含氧化锆的乙酸纤维素膜薄膜(ZrO_2 = 6.3 wt。%;每克材料0.50 mmol g〜(-1)的锆原子)与磷酸反应来制备高度分散的磷酸锆。通过离子交换反应使所得的膜膜与亚甲基蓝(MB)反应。结合在表面上的染料的量为0.15mmol g·(-1)。高功率解耦魔角旋转(HPDEC-MAS)〜(31)P NMR数据表明Zr(HPO_4)_2是存在于膜表面的物质。获得了吸附在CelZrP上的MB染料在固定在铂圆盘电极上的材料薄膜上的循环伏安实验。 CelZrP / MB的中点电位(E_m)为-0.15V。溶液的pH值实际上不影响pH 3到7之间的吸附染料的中点电位。修饰的电极具有可再现的响应,并且在各种氧化条件下化学稳定-减少循环。事实证明,该电极可有效介导NADH氧化的转移。修饰电极的表观Michaelis-Menten常数K_M〜(app)显示出染料与NADH之间的有效相互作用。

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